云斯寧,博士,二級教授,博士生導師,陜西省“特支計劃”科技創新領軍人才,材料物理與化學專業學術學科帶頭人,國家自然科學基金評審專家,國家留學基金委出國留學評審專家,陜西省中青年科技創新領軍人才,廣東省科學技術獎評審專家,廣東省自然科學基金會評專家,江西省科技計劃評審專家,重慶市科技計劃評審專家,陜西省科技計劃評審專家,陜西省工業科技專家庫專家,陜西省留學人員科技活動擇優資助項目評審專家,中東最享有盛譽的綜合性大學(美國沙迦大學(UOS))國際項目評審專家,巴基斯坦高等學校教授任職國際評審專家,陜西省納米材料與納米技術重點實驗室學術委員會成員,“新能源材料團隊”和“新能源納米材料與器件化技術應用團隊”兩個團隊的負責人,西安建筑科技大學青年教師標兵,“圣和圣”杯最受學生歡迎的主講教師,留學回國人員,Nature出版集團國際期刊Frontiers in Materials, Frontiers in Energy Research (Frontiers publisher, Switzerland)的Review Editorial Board雜志評審編輯, 國際期刊Nano Energy Systems (One Central Press, United Kingdom)的International Editorial Board雜志編委,SCI期刊Journal of Nanotechnology和International Journal of Electrochemistry特刊客座主編(Lead Guest Editor),陜西省僑聯特聘專家委員會委員,新能源材料技術創新與協同發展中心新能源材料專家理事會理事,中國化工學會會員,陜西省硅酸鹽學會理事,中國硅酸鹽學會陶瓷分會建筑衛生陶瓷專業委員會委員,西安納米科技學會理事,西安歐美同學會·西安留學人員聯誼會理事。<
博士學位論文獲2007年度西安交通大學優秀博士論文(14/423)。2007年獲準國家留學基金委“西部地區人才培養特別項目”資助。2008-2009年韓國Yonsei University化學與生物工程系研修。2011-2012年DUT國家重點實驗室高級訪問研究。2015年8月訪問美國斯坦福大學、美國加州大學、美國勞倫斯伯克利國家實驗室。2016年8月英國里丁大學訪問交流。2016年獲“Wiley材料學高峰論壇-西安”Highly-cited Author Award(高被引作者獎)。 2016-2017年瑞士洛桑聯邦理工學院EPFL高級訪問交流。2017年獲中國國際光伏大會Best Presentation Award獎。2017年獲陜西省中青年科技創新領軍人才稱號。 參與或主持20余項國家級、省部級、地市級、校級各類課題。主持完成省教育廳項目和校級項目獲校級技進步二等獎1項、三等獎1項。做邀請主旨報告、邀請大會報告、國際會議大會主席等40余次。
長期從事與無機非金屬材料的科研、教學及技術開發工作。在Chem Sov Rev,Prog Polym Sci, Energy Environ Sci, Adv Mater, Adv Energy Mater,Appl Catal B-Environ, Nano Energy,Angew Chem Int Edit, J Mater Chem A, Chemical Engineering Journal, ChemSusChem, Nanoscale, J Power Sources, Carbon, Bioresource Technol等國內外行業主流期刊上,以第1作者兼通訊作者發表SCI論文90余篇,EI論文40余篇,CSTPCD論文20余篇。主編/參編專著9部,其中:主編中文專著1部(2014獲中國石油和化學工業優秀出版物二等獎);主編外文專著2部;主編研究生教材1部;參編中國、法國、印度、瑞典、波蘭教授專著5部(之一下載量超過10萬余次)。擁有24項國家授權專利技術
與日本九州工業大學、瑞典烏普薩拉大學、美國威斯康星大學、韓國延世大學、巴西坎皮納斯大學、西班牙阿文戈亞太陽能公司、芬蘭阿爾托大學、德國ISE太陽能系統研究所,英國里丁大學、瑞士洛桑聯邦理工學院EPFL、法國FOTON等國際知名大學教授和研究員保持長期穩定的科研合作。長期擔任Nature Communications, Coordination Chemistry Reviews, Adv Mater, Adv Energy Mater, Adv Funct Mater, Advanced Electronic Materials, Adv Eng Mater, ACS Nano, Nano Energy, JACS,Applied Catalysis B: Environmental, Small, J Mater Chem A/B/C, Nanoscale, ChemSusChem, Chem Comm, Carbon, Scientific Reports, ACS Appl Mater Inter, J Phys Chem A/B/C, Electrochimica Acta, Dalton Transactions, Langmuir, Appl Energy, Appl Phys Lett, J Alloys Comp, Phys Status Solid, Mater Chem Phys, Mater Sci Eng B, Nanoscale Res Lett, J Solid State Chem, J Electrochem Soc,J Colloid Interface Sci, RSC Advances, NANO, Chemistry-Asian J, Part Part Syst Char, Organic Electronics, Surfaces and Interfaces, Phys Chem Chem Phys, Journal of Applied Physics, J Power Sources, Bioresource Technology, Chemical Engineering Journal, Water Research, ACS Sustainable Chemistry & Engineering,ACS Applied Energy Materials,Materials Today Energy, Journal of Hazardous Materials, International Journal of Energy Research, J Environmental Science and Pollution Research, IEEE Transactions on Electron Devices, Journal of Industrial and Engineering Chemistry, Journal of Physics and Chemistry of Solids, Materials Letter, Ionics, Nanoscale Advances, Environmental Pollution, Solar Energy, Archives of Agronomy and Soil Science,Physics, Physica B/E, Journal of Theoretical and Applied Physics, Journal of Electroanalytical Chemistry, Waste and Biomass Valorization, ACS Energy & Fuels, Heliyon, Materials Today Energy, Journal of Science: Advanced Materials and Devices, New Journal of Chemistry, Materials and Design, Materials, Animals,iScience, Science of the Total Environment, Modern Applied Science, Energy Conversion and Management, Letters in Organic Chemistry, Electronic Materials Letters等80余種主要國際SCI學術期刊的特邀審稿和仲裁專家
教育背景:
2003.09-2006.11:西安交通大學,材料科學與工程專業,獲博士學位
2000.09-2003.07:西安建筑科技大學,材料學專業,獲碩士學位
1995.09-1999.07:西安建筑科技大學,無機非金屬專業,獲學士學位
工作經歷:
2016.12-2017.06:瑞士洛桑聯邦理工學院,化學科學工程研究所,高級訪問學者
2016.08-2016.09: 英國里丁大學,國際語言與研究學院(ISLI),雙語教學培訓(EMI)和訪問
2015.08-2015.09: 美國斯坦福大學,美國加州大學,勞倫斯伯克利國家實驗室,訪問教授
2014.07-至今:西安建筑科技大學,材料與礦資學院,博士研究生導師(破格晉升)
2013.10-至今:西安建筑科技大學,材料與礦資學院,教授(破格晉升)
2012.03-2012.09:精細化工國家重點實驗室(大連理工大學),訪問教授
2011.11-至今:西安建筑科技大學,材料與礦資學院,學術學科帶頭人
2010.10-2013.10:西安建筑科技大學,材料與礦資學院,副教授
2009.05-至今:西安建筑科技大學,材料與礦資學院,碩士研究生導師
2008.12-2009.12:延世大學(Yonsei University,韓國),化學與生物工程系,研修
2008.10-2010.10:西安建筑科技大學,材料與礦資學院,副教授(校聘,破格晉升)
2007.01-2008.10:西安建筑科技大學,材料與礦資學院,講師
社會學術兼職(Scientific Community Service):
1)Nature出版集團Frontiers in Materials, Frontiers in Energy Research雜志評審編輯。
Review Editorial Board Member, Frontiers in Materials & Energy Research, Frontiers publisher,Switzerland
http://www.frontiersin.org/
http://www.frontiersin.org/people
http://www.frontiersin.org/SearchData.aspx?sq=Review+Editorial+Board&ht=1
2)國際期刊Nano Energy Systems雜志編委。
International Editorial Board Member, Nano Energy Systems, One Central Press publisher, UK
http://www.onecentralpress.com/nano-energy-systems/
3)SCI期刊Journal of Nanotechnology特刊客座主編( Lead Guest Editor)。
https://www.hindawi.com/journals/jnt/si/237318/cfp/
4)SCI期刊International Journal of Electrochemistry特刊客座主編(Lead Guest Editor)。
https://www.hindawi.com/journals/ijelc/si/458639/cfp/
5)陜西省納米材料與納米技術重點實驗室學術委員會成員。
http://jg.xauat.edu.cn/nmcl/index.php?do=zxgk&gklb_id=16
6)新能源材料技術創新與協同發展中心新能源材料專家理事會理事。
http://www.china-xnycl.com/picnews_content.asp?id=2748&bh=3
7)陜西省硅酸鹽學會理事。
8)中國硅酸鹽學會陶瓷分會建筑衛生陶瓷專業委員會委員。
9)西安納米科技學會理事。
10)中國化工學會會員。
11)40余種主要國際SCI學術期刊的特邀審稿和仲裁專家。
12)陜西省僑聯特聘專家委員會委員。
13)西安歐美同學會理事。
14)國際顧問委員會委員。
International Advisory Board Member, NANOSMAT Conference, Manchester, UK
http://www.nanosmat-conference.com/committees.asp
13)國際顧問委員會委員。
International Advisory Board Member, NANOENERGY, Manchester, UK
http://www.nanoenergy.co.uk/committees.html
14)SCI期刊International Journal of Hydrogen Energy(Guest Editor)特刊客座主編。
15)SCI 期刊International Journal of Green Energy (IJGE) (Editorial Board) 國際期刊編委。
主講課程:
(1)《新型能源材料 New Energy Materials》(研究生 Master & Ph.D Student)
(2)《光學材料 Funcntional photics Materials》(研究生Master Student)
(3)《生物質能工程 Biomass Energy Engineering》(研究生Master & Ph.D Student)
(4)《功能納米材料 Functional Nanomaterials》(本科生Master Student)
(5)《太陽能光伏發電系統設計 Applied Photovoltaics》(本科生 Bachelor Student)
學生招募(Recruit Students)
我們重視學術團隊建設,重視研究生培養,重視國際合作與交流。
在材料學、材料物理與化學、資源循環科學與工程等專業均招收博士和碩士研究生。
碩士招生方向:新能源材料、固體廢棄物資源化、電子信息材料。
博士招生方向:新能源材料、電子材料與器件、資源循環理論與技術。
研究生入學考試科目,詳情參見每年研究生院發布的招生簡章。
Every year, Yun Professor’s group recuits 10-15 graduate students for a Master’s degree and 2-3 graduate students for Doctor’s degree, including oversea students. The research works are concentrated on the advanced materials and nanostructured materials for the new energy fields such as solar cells, fuel cells, supercapacitor, biosensors, hydrogen generation, energy storage, organic matter decomposition and pollution control. For oversea students who want join this group, please contact Prof. S Yun via the email:Yunsining@xauat.edu.cn.
培養研究生情況:
2019 M 柯騰(Teng Ke), 黨長偉(Changwei Dang), 劉卓磊(Zhuolei Liu), 安錦航(Jinghang An), 鄧瑩瑩(Zhanbo Wu), 賈凌云(Lingyun Jia), 劉娟(Juan Liu), 王銀號(Yinhao Wang), 趙澤妮(Zeni Zhao)
2019 P Nosheen zafar, Brundha Chidambaram
2018 D 張永偉 (Yongwei Zhang), 黨姣娥 (Jiaoe Dang), Yasir Abbas, Muhammad Asim Arshad
2018 P 張婷婷 (Tingting Zhang)
2012 D 張仙梅 (Xianmei Zhang)
2013 D 李晶 (Jing Li)
2015 D 宗志芳 (Zhifang Zong)
2013 M 杜婷婷 (Tingting Du), 朱江 (Jiang Zhu),
2014 M 張太宏 (Taihong Zhang), 劉艷芳 (Yanfang Liu),胡謝利 (Xieli Hu), 黃欣磊 (Xinglei Huang)
2015 M 王曉東 (Xiaodong Wang), 后玉芝 (Yuzhi Hou), 周笑 (Xiao Zhou), 方雯 (Wen Fang), 張琛(Chen Zhang), 李雪 (Xue Li)
2016 M 王真 (Zhen Wang), 王子齊 (Ziqi Wang), 徐鴻飛 (Hongfei Xu), 張陽亮(Yangliang Zhang)
2017 M 韓鳳(Feng Han) , 司藝銘(Yiming Si) , 陳嘉庚(Jiageng Chen) , 賈波(Bo Jia) ,李靜文(Jingwen Li) , 喬昕瑩(Xinying Qiao)
2018 M 吳占波 (Zhanbo Wu), 楊超 (Chao Yang), 王曦 (Xi Wang), 邢天 (Tian Xing ), 張麗珊 (Lishan Zhang), 孫夢龍 (Menglong Sun), 李冰潔 (Bingjie Li)
學生獲獎(Student Award)
2015
2013-M杜婷婷 (Tingting Du), 學業獎學金, 一等, 8000元
2013-M朱江 (Jiang Zhu), 學業獎學金, 一等, 8000元
2014-M張太宏 (Taihong Zhang), 國家獎學金, 一等, 20000元
2014-M劉艷芳 (Yanfang Liu), 國家獎學金, 一等, 20000元
2014-M胡謝利 (Xieli Hu), 學業獎學金, 一等, 8000元
2013-D李晶 (Jing Li), FML首屆研究生學術論壇,一等獎獲得者
2013-M杜婷婷 (Tingting Du), FML首屆研究生學術論壇,二等獎獲得者
2016
2014-M張太宏 (Taihong zhang), 學業獎學金, 一等, 8000元
2014-M劉艷芳 (Yanfang Liu), 學業獎學金, 二等, 5000元
2014-M黃欣磊 (Xinlei Huang), 國家獎學金, 一等, 20000元
2015-M周笑 (Xiao Zhou), 學業獎學金, 一等, 8000元
2015-M方雯 (Wen Fang), 學業獎學金, 一等, 8000元
2015-M王曉東 (Xiaodong Wang), 學業獎學金, 一等, 8000元
2015-M王曉東 (Xiaodong Wang), 蒙娜麗莎企業獎學金, 二等, 1000元
2015-M張琛(Chen Zhang), 學業獎學金, 二等, 5000元
2015-M后玉芝 (Yuzhi Hou), 學業獎學金, 一等, 8000元
2016-M王晨(Chen Wang), 學業獎學金, 二等, 5000元
2014-M張太宏 (Taihong Zhang), FML第二屆研究生學術論壇, 一等獎獲得者
2015-M張琛(Chen Zhang), FML第二屆研究生學術論壇, 三等獎獲得者
2017
2015-M周笑 (Xiao Zhou), 國家獎學金, 一等, 20000元
2015-M周笑 (Xiao Zhou), 學業獎學金, 一等, 8000元
2015-M后玉芝 (Yuzhi Hou), 學業獎學金, 一等, 8000元
2015-M方雯 (Wen Fang), 學業獎學金, 二等, 5000元
2015-M李雪 (Xue Li) , 學業獎學金, 二等, 5000元
2015-M李雪 (Xue Li), 濮耐企業獎學金, 學術論文獎, 1000元
2015-M張琛(Chen Zhang), 學業獎學金, 二等, 5000元
2015-M王曉東 (Xiaodong Wang), 學業獎學金, 二等, 5000元
2015-M張琛(Chen Zhang), 學業獎學金, 二等, 5000元
2017-M韓鳳(Feng Han), 學業獎學金, 一等, 8000元
2015-M后玉芝 (Yuzhi Hou), FML第三屆研究生學術論壇, 一等獎獲得者
2015-M張琛(Chen Zhang), FML第三屆研究生學術論壇, 二等獎獲得者
2015-M李雪 (Xue Li), FML第三屆研究生學術論壇, 三等獎獲得者
2015-M王曉東 (Xiaodong Wang), FML第三屆研究生學術論壇, 三等獎獲得者
研究方向:
1. 新能源材料與多功能集成器件(New Energy Materials and the Integrated Devices)
2. 無機納米材料合成與應用(Systhesis and application of inorganic Nanomaterials)
3. 鈣鈦礦功能電子材料與器件(Electronic Devices and Related ABO3Materials)
4. 新一代太陽能電池材料與技術(New Generation DSSC and Perovskite Solar Cells)
5. 廢棄物的資源化循環利用(Waste Resource Recycling)
6. 可再生能源的清潔利用(Cleaner Ultilization for Renewable Energy Resources)
7. 第一性原理計算與分子動力學模擬(first-principle density functional theory (DFT) calculations, ab-initio Car-Parrinello molecular dynamics (CPMD) simulations)。
科研項目:
1. 鎢鉬鈮鉭基雙金屬氧化物DSC對電極原位化學共沉淀構筑及催化機理研究,62萬元(直接經費),在研,主持,國家自然科學基金面上項目,2017/01-2020/12。
2. 養殖場糞污資源生物燃氣制備技術集成示范,2080/155萬元,已結題,主持,國家十二五科技支撐計劃項目合作研究,2012/09-2015/12。
3. 生物質氣化關鍵技術研究與示范,10萬元,已結題,主持陜西省科技廳社會發展攻關項目,2010/09-2013/12。
認定成果:
1 高性能半導體與功能材料理論設計與物性研究 樊慶揚;云斯寧;王慧琴;張偉;柴常春;宋延興 西安建筑科技大學 2021
2 生物質資源化利用關鍵技術創新與示范 云斯寧;周楚新;孫海龍 西安建筑科技大學 2015
3 一種多循環攪拌蛋形厭氧發酵系統 云斯寧;孫毅 西安建筑科技大學 2015
4 低微ZnO納米材料的可控生長及其在DSSC中的應用 云斯寧;李輝;錢旭坤;宋強;雷西平;李玉祥;胡亞茹 陜西循環經濟工程技術院 2012
5 一種改善染料敏化太陽能電池基板界面粘結性的方法 云斯寧 西安建筑科技大學 2011
6 一種組合式旋風分離收集裝置及分離收集花粉的方法 云斯寧;孫毅;甘艷萍 西安建筑科技大學 2011
7 花粉分離器 王西銳;云斯寧;李永武;雷玉山 陜西省農村科技開發中心 2011
發明公開:
[1]云斯寧, 楊天翔, 畢強, 楊光平, 王若名, 王支國, 楊海江, 馮柔. 一種中空納米盒狀電催化劑及其制備和應用[P]. 陜西省: CN118756203A, 2024-10-11.
[2]云斯寧, 王支國, 馬晶, 王若名, 楊光平, 楊天翔, 楊海江, 馮柔. 一種MXene基雙功能電催化材料及其制備和應用[P]. 陜西省: CN118727041A, 2024-10-01.
[3]楊瑞, 朱維晃, 王望泊, 馮一舟, 云斯寧, 吳豐昌. 豆渣負載鐵銅催化材料、制備方法及降解四環素的方法[P]. 陜西省: CN117718046A, 2024-03-19.
[4]朱維晃, 楊瑞, 王晨, 馮一舟, 云斯寧, 吳豐昌. 采用椰子殼生物炭過硫酸鹽活化劑處理有機廢水的方法[P]. 陜西省: CN117509874A, 2024-02-06.
[5]云斯寧, 賈凌云, 王凱君, 劉東東, 邊根慶, 蒙瑤, 郭佳新. 一種短期光伏發電功率預測方法及系統[P]. 陜西省: CN114825328A, 2022-07-29.
[6]云斯寧, 趙澤妮, 王凱君, 劉東東, 邊根慶, 郭佳新, 蒙瑤. 考慮氣象特征的深度學習短期風電功率預測方法及系統[P]. 陜西省: CN114744618A, 2022-07-12.
[7]云斯寧, 徐鴻飛. 一種厭氧發酵用含磷復合添加劑及發酵方法[P]. 陜西省: CN109851446A, 2019-06-07.
[8]高鐵牛, 劉彩霞, 云斯寧, 曹偉, 暢江. 一種有助于治污減霾的城市中水回用生態化系統[P]. 陜西省: CN109629627A, 2019-04-16.
[9]云斯寧, 賈波, 張永偉. 一種磁場可控的沼氣厭氧發酵裝置及發酵方法[P]. 陜西省: CN109486674A, 2019-03-19.
[10]云斯寧, 張琛. 厭氧發酵復合添加劑及促進沼渣、沼液肥料厭氧發酵的方法[P]. 陜西: CN107337506A, 2017-11-10.
[11]云斯寧, 黃欣磊. 一種沼氣發酵用功能復合促進劑及其制備方法[P]. 陜西: CN107022576A, 2017-08-08.
[12]云斯寧, 黃欣磊, 朱江, 杜婷婷, 胡謝利. 一種實驗室用連續式沼氣厭氧發酵裝置[P]. 陜西: CN104357322A, 2015-02-18.
[13]云斯寧, 王吉爾, 朱江, 杜婷婷. 一種蘆薈凝膠載深亞微米Ag的復合涂膜劑及其用于蘆薈保鮮的方法[P]. 陜西: CN104126657A, 2014-11-05.
[14]云斯寧, 張仙梅, 楊玉芬, 何振全. 一種沼氣發酵用功能性生物催化劑及利用催化劑發酵的方法[P]. 陜西: CN103740764A, 2014-04-23.
[15]云斯寧, 朱江, 杜婷婷, 張仙梅. 一種多級式攪拌太陽能輔助加熱節能發酵裝置[P]. 陜西: CN103602581A, 2014-02-26.
[16]云斯寧, 杜婷婷, 朱江, 張仙梅. 一種分級式底吹氣力攪拌沼氣發酵系統[P]. 陜西: CN103602585A, 2014-02-26.
[17]云斯寧, 張仙梅, 許海超, 杜婷婷, 朱江, 王吉爾. 一種從果樹花朵提取花藥的多功能果樹花朵深加工裝置[P]. 陜西: CN103418478A, 2013-12-04.
[18]云斯寧, 杜婷婷. 一種利用鉭基對電極催化材料制備染料敏化太陽能電池對電極的方法[P]. 陜西: CN103413686A, 2013-11-27.
[19]云斯寧, 朱江. 一種染料敏化太陽能電池鉑負載碳化硅對電極的制備方法[P]. 陜西: CN103413687A, 2013-11-27.
[20]云斯寧, 王吉爾, 張仙梅, 朱江, 杜婷婷, 楊曉胤, 許海超. 一種水流沖擊式管道清淤裝置[P]. 陜西: CN103341474A, 2013-10-09.
[21]云斯寧, 孫毅. 一種多循環攪拌蛋形厭氧發酵系統[P]. 陜西: CN102517199A, 2012-06-27.
[22]云斯寧. 一種改善染料敏化太陽能電池基板界面粘結性的方法[P]. 陜西: CN102324308A, 2012-01-18.
[23]王西銳, 云斯寧, 李永武, 雷玉山. 花粉分離器[P]. 陜西: CN102273366A, 2011-12-14.
[24]云斯寧, 孫毅, 甘艷萍. 一種組合式旋風分離收集裝置及分離收集花粉的方法[P]. 陜西: CN102217464A, 2011-10-19.
發明授權:
[1]云斯寧, 賈波, 張永偉. 一種磁場可控的沼氣厭氧發酵裝置及發酵方法[P]. 陜西省: CN109486674B, 2022-04-26.
[2]云斯寧, 張琛. 厭氧發酵復合添加劑及促進沼渣、沼液肥料厭氧發酵的方法[P]. 陜西省: CN107337506B, 2021-01-26.
[3]云斯寧, 黃欣磊. 一種沼氣發酵用功能復合促進劑及其制備方法[P]. 陜西省: CN107022576B, 2020-10-16.
[4]云斯寧, 杜婷婷. 一種利用鉭基對電極催化材料制備染料敏化太陽能電池對電極的方法[P]. 陜西省: CN103413686B, 2017-05-24.
[5]云斯寧, 朱江. 一種染料敏化太陽能電池鉑負載碳化硅對電極的制備方法[P]. 陜西省: CN103413687B, 2017-02-08.
[6]云斯寧, 王吉爾, 朱江, 杜婷婷. 一種蘆薈凝膠載深亞微米Ag的復合涂膜劑及其用于蘆薈保鮮的方法[P]. 陜西省: CN104126657B, 2016-02-24.
[7]云斯寧, 黃欣磊, 朱江, 杜婷婷, 胡謝利. 一種實驗室用連續式沼氣厭氧發酵裝置[P]. 陜西省: CN104357322B, 2016-01-13.
[8]云斯寧, 張仙梅, 楊玉芬, 何振全. 一種沼氣發酵用功能性生物催化劑及利用催化劑發酵的方法[P]. 陜西省: CN103740764B, 2015-12-02.
[9]云斯寧, 王吉爾, 張仙梅, 朱江, 杜婷婷, 楊曉胤, 許海超. 一種水流沖擊式管道清淤裝置[P]. 陜西省: CN103341474B, 2015-03-11.
[10]云斯寧, 張仙梅, 許海超, 杜婷婷, 朱江, 王吉爾. 一種從果樹花朵提取花藥的多功能果樹花朵深加工裝置[P]. 陜西省: CN103418478B, 2015-01-14.
[11]云斯寧, 杜婷婷, 朱江, 張仙梅. 一種分級式底吹氣力攪拌沼氣發酵系統[P]. 陜西省: CN103602585B, 2014-11-26.
[12]云斯寧, 朱江, 杜婷婷, 張仙梅. 一種多級式攪拌太陽能輔助加熱節能發酵裝置[P]. 陜西省: CN103602581B, 2014-10-29.
[13]云斯寧, 孫毅. 一種多循環攪拌蛋形厭氧發酵系統[P]. 陜西省: CN102517199B, 2013-02-06.
[14]王西銳, 云斯寧, 李永武, 雷玉山. 花粉分離器[P]. 陜西省: CN102273366B, 2013-01-30.
[15]云斯寧, 孫毅, 甘艷萍. 一種組合式旋風分離收集裝置及分離收集花粉的方法[P]. 陜西省: CN102217464B, 2012-11-21.
[16]云斯寧. 一種改善染料敏化太陽能電池基板界面粘結性的方法[P]. 陜西省: CN102324308B, 2012-10-17.
實用新型:
[1]云斯寧, 朱江, 杜婷婷. 一種節能沼氣發酵罐[P]. 陜西: CN203582851U, 2014-05-07.
[2]云斯寧, 杜婷婷, 朱江, 張仙梅, 許海超, 邱建泉, 徐德龍. 分級式氣力攪拌發酵裝置[P]. 陜西: CN203582867U, 2014-05-07.
[3]云斯寧, 許海超, 張仙梅, 王吉爾, 杜婷婷, 朱江. 果樹花朵深加工用破碎分離烘干裝置[P]. 陜西: CN203408774U, 2014-01-29.
[4]云斯寧, 杜婷婷. 一種染料敏化太陽能電池復合結構對電極[P]. 陜西: CN203377110U, 2014-01-01.
[5]云斯寧, 王吉爾, 張仙梅, 朱江, 杜婷婷, 楊曉胤, 許海超. 水錘式管道清淤機[P]. 陜西: CN203356145U, 2013-12-25.
[6]云斯寧, 孫毅, 甘艷萍, 邵升, 張學峰, 邱建泉. 一種節能厭氧發酵裝置[P]. 陜西: CN202322828U, 2012-07-11.
[7]云斯寧. 一種立體吸光結構的柱形染料敏化太陽能電池[P]. 陜西: CN202230887U, 2012-05-23.
[8]云斯寧, 甘艷萍, 孫毅, 魏育英, 徐德龍. 一種用于果樹花粉生產的組合式旋風分離收集裝置[P]. 陜西: CN202105739U, 2012-01-11.
[9]王西銳, 云斯寧, 李永武, 雷玉山. 獼猴桃花粉分離器[P]. 陜西: CN202061817U, 2011-12-07.
1. 云斯寧. 一種改善染料敏化太陽能電池基板界面粘結性的方法. 專利號: China Patent No. ZL 201110179968.1.
2. 云斯寧, 孫毅, 甘艷萍. 一種組合式旋風分離收集裝置及分離收集花粉的方法. 專利號: China Patent No. ZL 201110112822.5.
3. 云斯寧, 孫毅. 一種多循環攪拌蛋形厭氧發酵系統. 專利號: China Patent No. ZL 201110365150.9.
4. 王西銳、云斯寧、李永武、雷玉山. 花粉分離器. 專利號: China Patent No. ZL 201110107771.7.
5. 云斯寧、王吉爾、張仙梅、朱江、杜婷婷、楊曉胤、許海超. 一種水流沖擊式管道清淤裝置. 專利號: China Patent No. ZL 201310303779.x.
6. 云斯寧、張仙梅、許海超、杜婷婷、朱江、王吉爾. 一種從果樹花朵提取花藥的多功能果樹花朵深加工裝置. 專利號: China Patent No. ZL 201310330193.2.
7. 云斯寧、朱江、杜婷婷、張仙梅.一種多級式攪拌太陽能輔助加熱節能發酵裝置. 專利號: China Patent No. ZL 201310548591.1.
8. 云斯寧、杜婷婷、朱江、張仙梅. 一種分級式底吹氣力攪拌沼氣發酵系統. 專利號: China Patent No. ZL 201310642271.2.
9. 云斯寧、張仙梅、楊玉芬,何振全. 一種沼氣發酵用功能性生物催化劑及利用催化劑發酵的方法. 專利號: China Patent No. ZL 201310744961.9.
10. 云斯寧、黃欣磊、朱江、杜婷婷、胡謝利. 一種實驗室用連續式沼氣厭氧發酵裝置. 專利號: China Patent No. ZL 201410718387.4.
11. 云斯寧、黃欣磊. 一種沼氣發酵用功能復合促進劑及其制備方法. 專利號: China Patent No. ZL 201710385714.2.
12. 云斯寧、張琛. 一種厭氧發酵復合添加劑的制備及沼渣沼液肥料化利用的方法. 專利號: China Patent No. ZL 201710482065.8.
13. 云斯寧、杜婷婷. 一種利用鉭基對電極催化材料制備染料敏化太陽能電池對電極的方法. 專利號: China Patent No. ZL 20131030818.6.
14. 云斯寧、朱江. 一種染料敏化太陽能電池鉑負載碳化硅對電極的制備方法. 專利號: China Patent No. ZL 201310314746.5.
學術論文及著作近年來,在Chem Sov Rev, Prog Polym Sci, Energy Environ Sci, Adv Mater, Adv Energy Mater, Appl Catal B-Environ, Nano Energy, Angew Chem Int Edit, J Mater Chem A等國內外行業主流期刊上,以第1作者兼通訊作者發表SCI論文90余篇。主編/參編專著9部,其中:主編中文專著1部(2014獲中國石油和化學工業優秀出版物二等獎);主編外文專著2部;主編研究生教材1部;參編中國、法國、印度、瑞典、波蘭教授專著5部(之一下載量超過10萬余次)。
代表性專著 (Selected Books& Chapters):
1.Sining Yun.Ferroelectrics: Characterization and Modeling. Chapter 13: Double hysteresis Loop in BaTiO3-based ferroelectric ceramics. ISBN 978-953-307-455-9, InTech Press, Vienna, Austria, 2011, pp. 245-264.
http://www.intechopen.com/books/mostdownloaded/ferroelectrics-characterization-and-modeling
2.Sining Yun.Bismuth: Characteristics, Production and Applications.Chapter 7: Structural, dielectric and ferroelectric properties of bismuth-doped barium titanate solid solution compounds and its application. ISBN: 978-1-61470-640-3, 978-1-61470-768-4,NOVA Science Publisher, New York, USA, 2012, pp. 171-186.
https://www.novapublishers.com/catalog/product_info.php?products_id=27527
3. 馬廷麗, 云斯寧(Sining Yun). 染料敏化太陽能電池—從理論基礎到技術應用(Dye-sensitized Solar Cells—Theoretical basis to Technical Application). ISBN: 978-7-122-17175-7,北京:化學工業出版社,2013,8.
4. 翁端, 劉爽, 同繼鋒, 云斯寧(Sining Yun). 綠色建材與建材綠色化. 第二章 綠色建材的研究和評價技術. ISBN: 978-7-122-24425-3,北京:化學工業出版社,2015,10.
5.Sining Yun, Anders Hagfeldt.Counter Electrode Electro-Catalysts for Dye-Sensitized and Perovskite Solar Cells. ISBN: 978-3-527-41367-6. WILEY-VCH, 2018.9. (Volume 1+Volume 2)
https://www.wiley.com/en-us/Counter+Electrodes+for+Dye+sensitized+and+Perovskite+Solar+Cells-p-9783527813605
6. 云斯寧(Sining Yun).《新型能源材料與器件》,研究生學科特色課程教材. ISBN:978-7-5160-2504-8,北京:建材工業出版社,2019年5月.
7. KaiJun Wang, Yasir Abbas,Sining Yun. Pure and Functionalized Carbon Based Nanomaterials: Analytical, Biomedical, Civil and Environmental Engineering Applications.Chapter 5. Bio-based Carbon Materials for Anaerobic Digestion.ISBN:978-1-138-49169-4, CRC Press, Taylor & Francis Group, 2020-7-2.
https://www.routledge.com/Pure-and-Functionalized-Carbon-Based-Nanomaterials-Analytical-Biomedical/Zarzycki/p/book/9781138491694
8. Jing Shi,Sining Yun. Solid Oxide Fuel Cells-From Electrolyte-based to Electrolyte-free Devices.Chapter 8:Charge Transfer in Oxide Solid Fuel Cells.ISBN: 978-3-527-34411-6, WILEY-VCH, 2020-2-28, pp239-pp273.
https://onlinelibrary.wiley.com/doi/book/10.1002/9783527812790
代表性論文 (Selected Publications)
[1] Yasir Abbas, Sining Yun*, Kaijun Wang, Muhammad Saqlain Jamil, Xiaomin Zhang, Cheng Peng, Han Luo. Coal thermal power plant magnetic fly ash as an accelerant for anaerobic digestion of cow dung and aloe peel residue: Optimizing the particle size under static magnetic field. Chemical Engineering Journal, 2025, 504, 158590. 2023 IF=15.1. DOI: 10.1016/j.cej.2024.158590
[2] Mengmeng Zhang, Sining Yun*, Tianxiang Yang, Guangping Yang, Menglong Sun, Jiaoe Dang, Zhiguo Wang, Haijiang Yang, Shuangxi Yuan, Asim Arshada, Ke Wang. 3D MOF-derived Co-doped Cu3P/NC octahedra embedded in 2D MXene nanosheets for efficient energy conversion. Journal of Materials Chemistry A, 2024, 12, 29479-29492. 2023 IF=10.7.DOI: 10.1039/d4ta05616g
[3] Bushra Bibi 1, Atif Nazar 1, Bin Zhu *1, Fan Yang, Muhammad Yousaf, Rizwan Raza, M.A.K. Yousaf Shah, Jung-Sik Kim*, Muhammad Afzal, Yongpeng Lei, Yifu Jing, Peter Lund, Sining Yun*. Emerging semiconductor ionic materials tailored by mixed ionic-electronic conductors for advanced fuel cells. Advanced Powder Materials, 2024, 3(6), 100231. 2023 IF=28.6.DOI: 10.1016/j.apmate.2024.100231
[4] Guangping Yang, Tianxiang Yang, Zhiguo Wang, Ke Wang, Mengmeng Zhang, Peter D. Lund, Sining Yun*. Targeted doping induces interfacial orientation for constructing surface-functionalized Schottky junctions to coordinate redox reactions in water electrolysis. Advanced Powder Materials, 2024, 3(5), 100224. 2023 IF=28.6 .DOI: 10.1016/j.apmate.2024.100224
[5] Yangyang Gao, Sining Yun*, Kaijun Wang, Lijianan Liu, Yasir Abbas, Muhammad Saqlain Jamil, Teng Ke, Jiayu Liu, Xiaoxue Zhang. Understanding of the potential role of carbon dots in promoting interspecies electron transfer process in anaerobic co-digestion under magnetic field: Focusing on methane and hydrogen production. Chemical Engineering Journal, 2024, 489, 151381. 2021 IF=16.7 .DOI: 10.1016/j.cej.2024.151381
[6] Yasir Abbas, Sining Yun*, Kaijun Wang, Xiaomin Zhang, Muhammad Saqlain Jamil, Fayyaz Ali Shah, Xiaoxue Zhang, Yangyang Gao, Han Luo. Association of magnetic-flyash in anaerobic co-digestion for biomethane optimization: Promoting biofilm formation. Journal of Cleaner Production, 2024, 438, 140767. 2022 IF=11.1.DOI: 10.1016/j.jclepro.2024.140767
[7] Teng Ke, Sining Yun*, Kaijun Wang, Tian Xing, Jiaoe Dang, Yongwei Zhang, Menglong Sun, Jinhang An, Lijianan Liu, Jiayu Liu. Constructing bimetal, alloy, and compound-modified nitrogen-doped biomass-derived carbon from coconut shell as accelerants for boosting methane production in bioenergy system. Energy Materials, 2024, 4, 400011. 2023 IF=11.8.DOI: 10.20517/energymater.2023.62
[8] Sining Yun*, Zan Gao#, Tianxiang Yang#, Menglong Sun, Guangping Yang, Ke Wang, Zhiguo Wang, Shuangxi Yuan, and Mengmeng Zhang. Constructing NiSe2/MoSe2 Mott-Schottky Heterojunctions Onto N-doped Brain Coral-Carbon Spheres by Phase Separation Strategies for Advanced Energy Conversion Applications, Advanced Functional Materials, 2023, 2314226. 2022 IF=19.DOI: 10.1002/adfm.202314226
[9] Guangping Yang, Sining Yun*, Tianxiang Yang, Jiaoe Dang, Yongwei Zhang, Zhiguo Wang. Designing Schottky coupled p-n junction to enhance the kinetic behavior of oxygen evolution reaction. Journal of Materials Chemistry A, 2024, 12, 1804-1815. 2022 IF=11.9.DOI: 10.1039/D3TA05071H
[10] Imran Khan, Wenjie Liu, Amir Zada*, Fazal Raziq, Sharafat Ali, Muhammad Ishaq Ali Shah, Muhammad Ateeq, Muhammad Khan, Dang Alei, Perveen Fazil, Waliullah Khan, Javed Ali Khan, Yixiao Cai, Wenbiao Jin, Sining Yun*, Lei Yang*. Recent progress in emerging materials and hybrid nanocomposites for peroxymonosulfate and peroxydisulfate activation towards solar light-driven photocatalytic degradation of emerging pollutants. Coordination Chemistry Reviews, 2024, 499, 215466. 2022 IF=20.6.DOI: 10.1016/j.ccr.2023.215466
[11] Lijianan Liu, Sining Yun*, Kaijun Wang, Teng Ke, Jiayu Liu, Yangyang Gao, Xiaoxue Zhang. Enhanced anaerobic co-digestion under a magnetic field by a synergistic host–guest strategy: Focusing on accelerant, biogas yield, fertilization and coupled effect. Chemical Engineering Journal, 2023, 476, 146508. 2022 IF=15.1.DOI: 10.1016/j.cej.2023.146508
[12] M.A.K. Yousaf Shah, Yuzheng Lu, Naveed Mushtaq, Muhammad Yousaf, Nabeela Akbar, Chen Xia, Sining Yun*, Bin Zhu*. Semiconductor-membrane fuel cell (SMFC) for renewable energy technology. Renewable and Sustainable Energy Reviews, 2023, 185, 113639. 2022 IF=15.9.DOI: 10.1016/j.rser.2023.113639
[13] Tianxiang Yang, Sining Yun*, Chen Wang, Yongwei Zhang, Jiaoe Dang, Guangping Yang, Zan Gao, Dan Qiao, Mengmeng Zhang. A hierarchical strategy for fabricating synergistic 3D network biobased porous carbon and 0D niobium-based bimetallic oxides as counter electrodes for I- and Cu-mediated dye-sensitized solar cells with N719 and Y123 dyes. Materials Today Energy, 2023, 37, 101371. 2022 IF=9.3.DOI: 10.1016/j.mtener.2023.101371
[14] Xiaoli Jiang, Wei Li, Yanxia Liu, Lin Zhao, Zhikai Chen, Lan Zhang, Yagang Zhang*, Sining Yun*. Electrocatalytic oxidation of 5-hydroxymethylfurfural for sustainable 2,5-furandicarboxylic acid production-From mechanism to catalysts design. SusMat, 2023, 3(1), 21-43. 2022 IF=28.4.DOI: 10.1002/sus2.109
[15] Dan Qiao, Sining Yun*, Menglong Sun, Jiaoe Dang, Yongwei Zhang, Shuangxi Yuan, Guangping Yang, Tianxiang Yang, Zan Gao, Zhiguo Wang. 1D/3D trepang-like N-modified carbon confined bimetal carbides and metal cobalt: boosting electron transfer via dual Mott-Schottky heterojunctions triggered built-in electric fields for efficient hydrogen evolution and tri-iodide reduction. Applied Catalysis B: Environmental, 2023, 334, 122830. 2021 IF=24.319.DOI: 10.1016/j.apcatb.2023.122830
[16] Jiayu Liu, Sining Yun*, Kaijun Wang, Lijianan Liu, Jinhang An, Teng Ke, Yangyang Gao, Xiaoxue Zhang. Enhanced methane production in microbial electrolysis cell coupled anaerobic digestion system with MXene accelerants. Bioresource Technology, 2023, 380, 129089. 2021 IF=11.889.DOI: 10.1016/j.biortech.2023.129089 >
[7] Zhijie Chen, Sining Yun*, Lan Wu, Jiaqi Zhang, Xingdong Shi, Wei Wei, Yiwen Liu, Renji Zheng, Ning Han, Bing-Jie Ni*. Waste-derived catalysts for water electrolysis: circular economy-driven sustainable green hydrogen energy. Nano-Micro Letters, 2023, 15, 4. 2021 IF=23.655.DOI: 10.1007/s40820-022-00974-7
[18] Ata Ur Rehman#,*, Tianyu Zhao#,*, Muhammad Zahir Shah, Yaqoob Khan, Asif Hayat, Changwei Dang, Maosheng Zheng, Sining Yun*. Nanoengineering of MgSO4 nanohybrid on MXene substrate for efficient thermochemical heat storage material. Applied Energy, 2023, 332, 120549. 2021 IF=11.446.DOI: 10.1016/j.apenergy.2022.120549
[19] Bo Li*, Ting Shen, Sining Yun*. Recent progress of crystal orientation engineering in halide perovskite photovoltaics. Materials Horizons, 2023, 10, 13-40. 2021 IF=15.717.DOI: 10.1039/D2MH00980C
[20] Zan Gao, Sining Yun*, Chao Yang, Yongwei Zhang, Jiaoe Dang, Guangping Yang, Tianxiang Yang, Dan Qiao, Ke Wang. Niobium- and cobalt-modified dual-source-derived porous carbon with a honeycomb-like stable structure for supercapacitor and hydrogen evolution reaction. Journal of Colloid and Interface Science, 2023, 639, 33-48. 2021 IF=9.965.DOI: 10.1016/j.jcis.2023.02.032
[21] Menglong Sun, Sining Yun*, Jiaoe Dang, Yongwei Zhang, Zhuolei Liu, Dan Qiao. 1D/3D rambutan-like Mott–Schottky porous carbon polyhedrons for efficient tri-iodide reduction and hydrogen evolution reaction. Chemical Engineering Journal, 2023, 458, 141301. 2021 IF=16.744.DOI: 10.1016/j.cej.2023.141301
[22] Xiaomi Zhou#, Jingjing Yang#, Ruoming Wang, Wei Zhang,*, Sining Yun*, Baoyuan Wang*. Advances in lithium-ion battery materials for ceramic fuel cells. Energy Materials, 2022, 2, 200041.2023 IF=11.8.DOI: 10.20517/energymater.2022.76
[23] Jinhang An, Sining Yun*, Wei Wang, Kaijun Wang, Teng Ke, Jiayu Liu, Lijianan Liu, Yangyang Gao, Xiaoxue Zhang. Enhanced methane production in anaerobic co-digestion systems with modified black phosphorus. Bioresource Technology, 2023, 368, 128311. 2021 IF=11.889.DOI: 10.1016/j.biortech.2022.128311
[24] Sining Yun*, Tian Xing, Yi Wang, Rong Chen, Feng Han, Chen Zhang, Ming Zou. Mineral residue accelerant-enhanced anaerobic digestion of cow manure: An evaluation system of comprehensive performance. Science of The Total Environment, 2023, 858, 159840. 2021 IF=10.753.DOI: 10.1016/j.scitotenv.2022.159840
[25] Zhuolei Liu, Sining Yun*, Menglong Sun, Jiaoe Dang, Yongwei Zhang, Yinhao Wang, Changwei Dang, Yingying Deng, Dan Qiao. Constructing MoS2@Co1.11Te2/Co-NCD with Te nanorods for efficient hydrogen evolution reaction and triiodide reduction. Materials Today Nano, 2022, 20, 100274. 2021 IF=13.364.DOI: 10.1016/j.mtnano.2022.100274
[26] Jiaoe Dang, Sining Yun* , Yongwei Zhang, Guangping Yang, Jingjing Yang, Dan Qiao, Tianxiang Yang. Designing nitrogen-enriched heterogeneous NiS@CoNi2S4 embedded in nitrogen-doped carbon with hierarchical 2D/3D nanocage structure for efficient alkaline hydrogen evolution and triiodide reduction. Journal of Colloid and Interface Science, 2023, 630, 91-105. 2021 IF=9.965.DOI: 10.1016/j.jcis.2022.09.136
[27] Changwei Dang, Sining Yun*, Yongwei Zhang, Jiaoe Dang, Yinhao Wang, Zhuolei Liu, Yingying Deng, Guangping Yang, Jingjing Yang. A tailored interface engineering strategy designed to enhance the electrocatalytic activity of NiFe2O4/NiTe heterogeneous structure for advanced energy conversion applications. Materials Today Nano, 2022, 20, 100242. 2021 IF=13.364.DOI: 10.1016/j.mtnano.2022.100242
[28] Yongwei Zhang, Sining Yun*, Jiaoe Dang, Changwei Dang, Guangping Yang, Yinhao Wang , Zhuolei Liu, Yingying Deng. Defect engineering via ternary nonmetal doping boosts the catalytic activity of ZIF-derived carbon-based metal-free catalysts for photovoltaics and water splitting. Materials Today Physics, 2022, 27, 100785. 2021 IF=11.021.DOI: 10.1016/j.mtphys.2022.100785
[29] Jiaoe Dang, Sining Yun*, Yongwei Zhang, Jingjing Yang, Zhuolei Liu, Changwei Dang, Yinhao Wang, Yingying Deng, Constructing double-shell structured N-C-in-Co/N-C electrocatalysts with nanorod- and rhombic dodecahedron-shaped hollow morphologies to boost electrocatalytic activity for hydrogen evolution and triiodide reduction reaction, Chemical Engineering Journal, 2022, 449, 137854. 2021 IF=16.744 .DOI: 10.1016/j.cej.2022.137854
[30] Yinhao Wang, Sining Yun*, Jing Shi, Yongwei Zhang, Jiaoe Dang, Changwei Dang, Zhuolei Liu, Yingying Deng, Tianxiang Yang. Defect engineering tuning electron structure of biphasic tungsten-based chalcogenide heterostructure improves its catalytic activity for hydrogen evolution and triiodide reduction. Journal of Colloid and Interface Science, 2022, 625, 800-816. 2021 IF=9.965.DOI: 10.1016/j.jcis.2022.06.051
[31] Yingying Deng, Sining Yun*, Jiaoe Dang, Yongwei Zhang, Changwei Dang, Yinhao Wang, Zhuolei Liu, Zan Gao. A multidimensional hierarchical strategy building melamine spongederived tetrapod carbon supported cobaltnickel tellurides 0D/3D nanohybrids for boosting hydrogen evolution and triiodide reduction reaction. Journal of Colloid and Interface Science, 2022, 624, 650-669. 2021 IF=9.965.DOI: 10.1016/j.jcis.2022.05.147
[32] Taimoor Raza#, Jingjing Yang#, Ruoming Wang, Chen Xia, Rizwan Raza, Bin Zhu, Sining Yun*. Recent advance in physical description and material development for single component SOFC: A mini-review. Chemical Engineering Journal, 2022, 444, 136533. 2021 IF=16.744.DOI: 10.1016/j.cej.2022.136533
[33] Sining Yun*, Yongwei Zhang#, Lishan Zhang#, Zhuolei Liu, Yingying Deng. Ni and Fe nanoparticles, alloy and Ni/Fe-Nx coordination co-boost the catalytic activity of the carbon-based catalyst for triiodide reduction and hydrogen evolution reaction. Journal of Colloid and Interface Science, 2022, 615, 501-516. 2021 IF=9.965.DOI: 10.1016/j.jcis.2022.01.192
[34] Teng Ke, Sining Yun*, Kaijun Wang, Jinhang An, Lijianan Liu, Jiayu Liu. Enhanced anaerobic co-digestion performance by using surface-annealed titanium spheres at different atmospheres. Bioresource Technology, 2022, 347, 126341. 2021 IF=11.889.DOI: 10.1016/j.biortech.2021.126341
[35] Asim Arshad, Sining Yun*, Jing Shi, Menglong Sun, Nosheen Zafar, Anders Hagfeldt. N-coordinated bimetallic defect-rich nanocarbons as highly efficient electrocatalysts in advanced energy conversion applications. Chemical Engineering Journal, 2022, 435, 134913. 2021 IF=16.744.DOI: 10.1016/j.cej.2022.134913
[36] Kaijun Wang, Sining Yun*, Teng Ke, Jinhang An, Yasir Abbas, Xinming Liu, Ming Zou, Lijianan Liu, Jiayu Liu. Use of bag-filter gas dust in anaerobic digestion of cattle manure for boosting the methane yield and digestate utilization. Bioresource Technology, 2022, 348, 126729. 2021 IF=11.889.DOI: 10.1016/j.biortech.2022.126729
[37] Bin Zhu*, Liangdong Fan*, Naveed Mushtaq, Rizwan Raza*, Muhammad Sajid, Yan Wu, Wenfeng Lin, Jung-Sik Kim, Peter D. Lund, Sining Yun*. Semiconductor Electrochemistry for Clean Energy Conversion and Storage. Electrochemical Energy Reviews, 2021, 4, 757-792. 2021 IF=32.804.DOI: 10.1007/s41918-021-00112-8
[38] Nosheen Zafar, Sining Yun*, Menglong Sun, Jing Shi, Asim Arshad, Yongwei Zhang, Zhanbo Wu. Cobalt-Based Incorporated Metals in Metal–Organic Framework-Derived Nitrogen-Doped Carbon as a Robust Catalyst for Triiodide Reduction in Photovoltaics. ACS Catalysis, 2021, 11, 13680−13695. 2021 IF=13.700.DOI: 10.1021/acscatal.1c04286
[39] Shuangxi Yuan, Sining Yun*, Yongwei Zhang, Jiaoe Dang, Menglong Sun, Changwei Dang, Yingying Deng. Dual-phase zinc selenide in situ encapsulated into size-reduced ZIF-8 derived selenium and nitrogen co-doped porous carbon for efficient triiodide reduction reaction. Journal of Materials Chemistry C, 2021, 9, 14408−14420. 2021 IF=8.067.DOI: 10.1039/D1TC02734D
[40] Menglong Sun, Sining Yun*, Jing Shi, Yongwei Zhang, Asim Arshad, Jiaoe Dang, Lishan Zhang, Xi Wang, Zhuolei Liu. Designing and Understanding the Outstanding Tri-Iodide Reduction of N-Coordinated Magnetic Metal Modified Defect-Rich Carbon Dodecahedrons in Photovoltaics. Small, 2021, 17 (41), 2102300. 2021 IF=15.153.DOI: 10.1002/smll.202102300
[41] Tian Xing, Sining Yun*, Bingjie Li, Kaijun Wang, Jiageng Chen, Bo Jia, Teng Ke, Jinhang An. Coconut-shell-derived bio-based carbon enhanced microbial electrolysis cells for upgrading anaerobic co-digestion of cow manure and aloe peel waste. Bioresource Technology, 2021, 338, 125520. 2021 IF=11.889.DOI: 10.1016/j.biortech.2021.125520
[42] Yongwei Zhang, Sining Yun*, Menglong Sun, Xi Wang, Lishan Zhang, Jiaoe Dang, Chao Yang, Jingjing Yang, Changwei Dang, Shuangxi Yuan. Implanted metal-nitrogen active sites enhance the electrocatalytic activity of zeolitic imidazolate zinc framework-derived porous carbon for the hydrogen evolution reaction in acidic and alkaline media. Journal of Colloid and Interface Science, 2021, 604, 441-457. 2021 IF=9.965. DOI: 10.1016/j.jcis.2021.06.152
[43] Xi Wang, Sining Yun*, Yongwei Zhang, Lishan Zhang, Jiaoe Dang, Menglong Sun, Zhuolei Liu, Yinhao Wang. Boosting catalytic activity of niobium/tantalum-nitrogen active sites for triiodide reduction in photovoltaics. Journal of Colloid and Interface Science, 2021, 603, 651-665. 2021 IF=9.965.DOI: 10.1016/j.jcis.2021.06.128
[44] Bingjie Li, Sining Yun*, Tian Xing, Kaijun Wang, Teng Ke, Jinhang An. A strategy for understanding the enhanced anaerobic co-digestion via dual-heteroatom doped bio-based carbon and its functional groups. Chemical Engineering Journal, 2021, 425, 130473. 2021 IF=16.744.DOI: 10.1016/j.cej.2021.130473
[45] Sining Yun*, Jing Shi#, Yiming Si#, Menglong Sun#, Yongwei Zhang, Asim Arshad, Chao Yang. Insight into electrocatalytic activity and mechanism of bimetal niobium-based oxides in situ embedded into biomass-derived porous carbon skeleton nanohybrids for photovoltaics and alkaline hydrogen evolution. Journal of Colloid and Interface Science, 2021, 601, 12-29. 2021 IF=9.965.DOI: 10.1016/j.jcis.2021.05.060
[46] Bo Li, Qilin Dai*, Sining Yun*, Jianjun Tian*. Insights into iodoplumbate complex evolution of precursor solutions for perovskite solar cells: from aging to degradation. Journal of Materials Chemistry A, 2021, 9, 6732-6748. 2021 IF=14.511.DOI: 10.1039/d0ta12094d
[47] Chao Yang, Sining Yun*, Jing Shi, Menglong Sun, Nosheen Zafar, Asim Arshad, Yongwei Zhang, Lishan Zhang. Tailoring the supercapacitive behaviors of Co/Zn-ZIF derived nanoporous carbon via incorporating transition metal species: A hybrid experimental-computational exploration. Chemical Engineering Journal, 2021, 419: 129636. 2021 IF=16.744.DOI: 10.1016/j.cej.2021.129636
[48] Ling Li, Jing Shi, Lishan Zhang, Kaifeng Zhao, Xiaoting Li*, Wenming Zhang*, Anders Hagfeldt, Sining Yun *. An experimental and theoretical exploration of the role of tri-element metal-nonmetal nanohybrids in photovoltaics. Chemical Engineering Journal, 2021, 413: 127491. 2021 IF=16.744.DOI: 10.1016/j.cej.2020.127491
[49] Van-Duong Dao*, Ngoc Hung Vu, Hai-Linh Thi Dang, Sining Yun. Recent advances and challenges for water evaporation-induced electricity toward applications. Nano Energy, 2021, 85, 105979. 2021 IF=19.069.DOI: 10.1016/j.nanoen.2021.105979
[50] Yasir Abbas, Sining Yun*, Kaijun Wang, Fayyaz Ali Shah, Tian Xing, Bingjie Li. Static-magnetic-field coupled with fly-ash accelerant: A powerful strategy to significantly enhance the mesophilic anaerobic-co-digestion. Bioresource Technology, 2021, 327: 124793. 2021 IF=11.889.DOI: 10.1016/j.biortech.2021.124793
[51] Kaijun Wang, Sining Yun*, Tian Xing, Bingjie Li, Yasir Abbas, Xinming Liu. Binary and ternary trace elements to enhance anaerobic digestion of cattle manure: Focusing on kinetic models for biogas production and digestate utilization. Bioresource Technology, 2021, 323: 124571. 2021 IF=11.889.DOI: 10.1016/j.biortech.2020.124571
[52] Sining Yun*, Tian Xing, Feng Han, Jing Shi, Ziqi Wang, Qingyang Fan, Hongfei Xu. Enhanced direct interspecies electron transfer with transition metal oxide accelerants in anaerobic digestion. Bioresource Technology, 2021, 320: 124294. 2021 IF=11.889.DOI: 10.1016/j.biortech.2020.124294
[53] Yasir Abbas, Sining Yun*, Ziqi Wang, Yongwei Zhang, Xianmei Zhang , Kaijun Wang. Recent advances in bio-based carbon materials for anaerobic digestion: A review. Renewable and Sustainable Energy Reviews, 2021, 135, 110378. 2021 IF=16.799.DOI: 10.1016/j.rser.2020.110378 PDF
[54] Balaraman Vedhanarayanan, Jing Shi, Jeng-Yu Lin, Sining Yun*, Tsung-Wu Lin. Enhanced activity and stability of MoS2 through enriching 1T-phase by covalent functionalization for energy conversion applications. Chemical Engineering Journal, 2021, 403: 126318. 2021 IF=16.744.DOI: 10.1016/j.cej.2020.126318
[55] Jingwen Li, Sining Yun*, Feng Han, Yiming Si, Asim Arshad, Yongwei Zhang, Brundha Chidambaram, Nosheen Zafar, Xinying Qiao. Biomass-derived carbon boosted catalytic properties of tungsten-based nanohybrids for accelerating the triiodide reduction in dye-sensitized solar cells. Journal of Colloid and Interface Science, 2020, 578: 184-194. 2021 IF=9.965.DOI: 10.1016/j.jcis.2020.04.089
[56] Feng Han, Sining Yun*, Jing Shi, Yongwei Zhang, Yiming Si, Chen Wang, Nosheen Zafar, Jingwen Li, Xinying Qiao. Efficient dual-function catalysts for triiodide reduction reaction and hydrogen evolution reaction using unique 3D network aloe waste-derived carbon-supported molybdenum-based bimetallic oxide nanohybrids. Applied Catalysis B: Environmental, 2020, 273: 119004. 2021 IF=24.319. DOI: 10.1016/j.apcatb.2020.119004
材料人咨詢平臺:http://www.cailiaoniu.com/202833.html
https://mp.weixin.qq.com/s/oKF7NRgT1cO6Hfq2U991AA
建大官網報道:http://news.xauat.edu.cn/xsky/2020-06-01/15744.html
[58] Bo Jia, Sining Yun*, Jing Shi, Feng Han, Ziqi Wang, Jiageng Chen, Yasir Abbas, Hongfei Xu, Kaijun Wang, Tian Xing. Enhanced anaerobic mono- and co-digestion under mesophilic condition: Focusing on the magnetic field and Ti-sphere core-shell structured additives. Bioresource Technology, 2020, 310: 123450. 2021 IF=11.889.DOI: 10.1016/j.biortech.2020.123450
[59] Jiageng Chen, Sining Yun*, Jing Shi, Ziqi Wang, Yasir Abbas, Kaijun Wang, Feng Han, Bo Jia, Hongfei Xu, Tian Xing, Bingjie Li. Role of biomass-derived carbon-based composite accelerants in enhanced anaerobic digestion: Focusing on biogas yield, fertilizer utilization, and density functional theory calculations. Bioresource Technology, 2020, 307: 123204. 2021 IF=11.889.DOI: 10.1016/j.biortech.2020.123204
[60] Sining Yun*, Yiming Si‡,Jing Shi‡, Taihong Zhang, Yuzhi Hou, Hang Liu, Sheng Meng, Anders Hagfeldt. Electronic Structures and Catalytic Activities of Niobium Oxides as Electrocatalysts in Liquid-Junction Photovoltaic Devices. Solar RRL, 2020, 4(3), 1900430. 2021 IF=9.173.DOI: 10.1002/solr.201900430
[61] Asim Arshad, Sining Yun*, Yiming Si, Feng Han, Yongwei Zhang, Yangliang Zhang, Ziqi Wang, Chen Wang. Aloe vera-peel derived porous carbon integrated Co/Mn-oxide based nano-hybrids: An efficient electrocatalyst in advanced photovoltaics. Journal of Power Sources, 2020, 451, 227731. 2021 IF=9.794.DOI: 10.1016/j.jpowsour.2020.227731
[62] Hongfei Xu, Sining Yun*, Chen Wang, Ziqi Wang, Feng Han, Bo Jia, Jiageng Chen, Bingjie Li. Improving performance and phosphorus content of anaerobic co-digestion of dairy manure with aloe peel waste using vermiculite. Bioresource Technology, 2020, 301, 122753. 2021 IF=11.889.DOI: 10.1016/j.biortech.2020.122753
[63] Van-Duong Dao*, Ngoc Hung Vu, Sining Yun, Recent advances and challenges for solar-driven water evaporation system toward applications, Nano Energy, 2020, 68, 104324. 2021 IF=19.069.DOI: 10.1016/j.nanoen.2019.104324
[64] Yueming Xing, Yan Wu*, Lingyao Li, Quan Shi, Jing Shi, Sining Yun*, Muhammad Akbar, Baoyuan Wang, Jung-Sik Kim*, Bin Zhu*. Proton Shuttles in CeO2/CeO2−δ Core–Shell Structure, ACS Energy Letters, 2019, 4, 2601-2607. 2021 IF=23.991.DOI: 10.1021/acsenergylett.9b01829
能源學人報道:https://mp.weixin.qq.com/s/FlmdZalOYmocLY-HW_q6CA
英國拉夫堡大學報道:
https://repository.lboro.ac.uk/articles/Proton_Shuttles_in_CeO2_CeO2_Core_Shell_Structure/9962774
西安建筑科技大學 官網報道:http://news.xauat.edu.cn/xsky/2019-11-04/14925.html
中國地質大學(武漢)官網報道:http://voice.cug.edu.cn/info/1032/15341.htm
NSFC基金委網站 報道:http://www.nsfc.gov.cn/csc/20340/20343/47588/index.html
[65] Baoyuan Wang, Bin Zhu, Sining Yun, Wei Zhang, Chen Xia, Muhammad Afzal, Yixiao Cai, Yanyan Liu, Yi Wang and Hao Wang. Fast ionic conduction in semiconductor CeO2-δ electrolyte fuel cells, NPG Asia Materials, 2019, 11, 55. 2021 IF=10.761.DOI: 10.1038/s41427-019-0152-8
[66] Chen Wang, Sining Yun*, Qingyang Fan, Ziqi Wang, Yangliang Zhang, Feng Han, Yiming Si and Anders Hagfeldt. A hybrid niobium-based oxide with bio-based porous carbon as an efficient electrocatalyst in photovoltaics: a general strategy for understanding the catalytic mechanism, Journal of Materials Chemistry A, 2019,7, 14864-14875. 2021 IF=14.511.DOI: 10.1039/C9TA03540K
西安建筑科技大學:http://news.xauat.edu.cn/xsky/2019-06-27/14581.html
新能源前線:https://mp.weixin.qq.com/s/l1fskROLYzlakJkt2XjLJw
材料人咨詢平臺:https://mp.weixin.qq.com/s/LwxWHV_FfyRcKX-QYy2qwA
[67] Sining Yun*, Nick Vlachopoulos*, Ahsanulhaq Qurashi, Shahzada Ahmad, Anders Hagfeldt. Dye Sensitized Photoelectrolysis Cells, Chemical Society Reviews, 2019, 48, 3705-3722. 2021 IF=60.615.DOI: 10.1039/C8CS00987B
能源學人:https://mp.weixin.qq.com/s/gaf3Awr2aKR7diJb_nCqMw
西安建筑科技大學:http://news.xauat.edu.cn/xsky/2019-05-29/14453.html
[68] Sining Yun,* Yongwei Zhang, Qi Xu, Jinmei Liu, Yong Qin. Recent advance in new-generation integrated devices for energy harvesting and storage, Nano Energy, 2019, 60, 600-619. 2021 IF=19.069.DOI: 10.1016/j.nanoen.2019.03.074
能源學人:https://mp.weixin.qq.com/s/x3FicQ36SJO3YOT7K-1dow
材料人:https://mp.weixin.qq.com/s/qj6BFbAEm6Fx9nas7EYm_A
[69] Ziqi Wang, Sining Yun*, Hongfei Xu, Chen Wang, Yangliang Zhang, Jiageng Chen, Bo Jia. Mesophilic anaerobic co-digestion of acorn slag waste with dairy manure in a batch digester: Focusing on mixing ratios and bio-based carbon accelerants, Bioresource Technology, 2019, 286, 121394. 2021 IF=11.889.DOI: 10.1016/j.biortech.2019.121394
生物質能:https://mp.weixin.qq.com/s/ISb1B_6TmBJMpbwPMklDVA
X-MOL生命科學:https://www.x-mol.com/news/17702
[70] Yangliang Zhang, Sining Yun*, Chen Wang, Ziqi Wang, Feng Han, Yiming Si. Bio-based carbon-enhanced tungsten-based bimetal oxides as counter electrodes for dye-sensitized solar cells. Journal of Power Sources, 2019, 423, 339-348. 2021 IF=9.794.DOI: 10.1016/j.jpowsour.2019.03.054
[71] Feng Han, Sining Yun*, Chen Zhang, Hongfei Xu, Ziqi Wang. Steel slag as accelerant in anaerobic digestion for nonhazardous treatment and digestate fertilizer utilization. Bioresource Technology, 2019, 282, 331-338. 2021 IF=11.889.DOI: 10.1016/j.biortech.2019.03.029
能源學人:https://mp.weixin.qq.com/s/4C5HxhN6RPXbHuRZoTRvzg
材料人:http://www.cailiaoniu.com/172582.html
[72] Jing Li, Sining Yun*, Xiao Zhou, Yuzhi Hou, Wen Fang, Taihong Zhang, Yanfang Liu. Incorporating transition metals (Ta/Co) into nitrogen-doped carbon as counter electrode catalysts for dye-sensitized solar cells. Carbon, 2018, 126, 145-155. 2021 IF=11.307.DOI: 10.1016/j.carbon.2017.10.010
[73] Xiaodong Wang, Sining Yun*, Wen Fang, Chen Zhang, Xu Liang, Zhibin Lei, Zonghuai Liu. Layer-Stacking Activated Carbon Derived from Sunflower Stalk as Electrode Materials for High-Performance Supercapacitors. ACS Sustainable Chemistry and Engineering, 2018, 6(9), 11397-11407. 2021 IF=9.224.DOI: 10.1021/acssuschemeng.8b01334
[74] Sining Yun*,Xiao Zhou, Jacky Even, Anders Hagfeldt. Recent progress of first principles calculations in CH3NH3PbI3perovskite solar cells.Angewandte Chemie International Edition,2017, 56, 15806-15817.2017 IF=12.257
X-MOL學術期刊:http://www.x-mol.com/paper/410506;JSESSIONID=264e1a6f-035d-42b2-ba0a-17568d53dd69
MaterialsViews China/Materials Views中國報道:
http://www.materialsviewschina.com/2018/01/27594/
搜狐科技:材料前沿精選
http://www.sohu.com/a/199593647_472924
MaterialsViews中國官方微博最前沿材料科技動態
https://weibo.com/1945345954/FDSff7qaE?type=comment#_rnd1515831388201
能源學人:http://mp.weixin.qq.com/s/hHBEXTtsX6TAClV-F8N-zg
材料前沿最新綜述精選:http://www.cailiaoniu.com/107899.html
[75] Sining Yun*, Yong Qin, Alexander R. Uhl, Nick Vlachopoulos, Min Yin, Dongdong Li, Xiaogang Han, Anders Hagfeldt. New-generation integrated devices based on dye-sensitized and perovskite solar cells, Energy & Environmental Science, 2018, 11(3), 476 - 526. 2021 IF=39.714.DOI: 10.1039/C7EE03165C PDF
材料牛科技資訊:http://www.cailiaoniu.com/124916.html
搜狐科技:http://www.sohu.com/a/221394764_472924
新能源前線:http://mp.weixin.qq.com/s/Sih1U4l4h4hN3TfZNWcIpg
材料科學與工程網:https://mp.weixin.qq.com/s/XYnHhjAhjgQNfCh0JIlSzA
陜西省教育廳:http://www.snedu.gov.cn/jynews/gdxx/201803/09/76386.html
[76] Chen Zhang, Sining Yun*, Xue Li, Ziqi Wang, Hongfei Xu, Tingting Du. Low-cost composited accelerants for anaerobic digestion of dairy manure: Focusing on methane yield, digestate utilization and energy evaluation. Bioresource Technology, 2018, 263, 517-524. 2021 IF=11.889.DOI: 10.1016/j.biortech.2018.05.042
[77] Sining Yun*, Xiao Zhou, Jacky Even, Anders Hagfeldt. Theoretical treatment of CH3NH3PbI3 perovskite solar cells. Angewandte Chemie International Edition, 2017, 56, 15806-15817. 2021 IF=16.823 .DOI: 10.1002/anie.201702660
[78] Xue Li,Sining Yun*, Chen Zhang, Wen Fang, Xinlei Huang, Tingting Du. Application of nano-scale transition metal carbides as accelerants in anaerobic digestion. International Journal of Hydrogen Energy, 2018, 43, 1926-1936.2017 IF=4.084
X-MOL行業資訊報道:http://www.x-mol.com/news/10577
X-MOL資訊:【生命科學】碳化物厭氧發酵促進劑:http://mp.weixin.qq.com/s/JhMutksnhX6oTZCMhVeDog
材料人:【新能源】碳化物發酵促進劑http://www.cailiaoniu.com/120085.html
能源學人:生物質能源:厭氧發酵促進劑http://mp.weixin.qq.com/s/00s8HqPgfh-lnbst9CSYQQ
新能源前線:http://mp.weixin.qq.com/s/ShmP_8StPbiZvxzWmgkGRQ
[79] Taihong Zhang, Sining Yun*, Xue Li, Xinlei Huang, Yuzhi Hou, Yanfang Liu, Jing Li, Xiao Zhou, Wen Fang. Fabrication of niobium-based oxides/oxynitrides/nitrides and their applications in dye-sensitized solar cells and anaerobic digestion. Journal of Power Sources, 2017, 340, 325-336. 2021 IF=9.794.DOI: 10.1016/j.jpowsour.2016.11.082
西建大云斯寧:氮氧化鈮在第三代太陽能電池和厭氧發酵系統中的應用
材料人咨訊/材料人/材料牛微頭條: http://www.cailiaoniu.com/55951.html
[80] Peter D Lund, Bin Zhu, Yongdan Li, Sining Yun, Albert G, Nasibulin, Rizwan Raza, Markku Leskelä, Meng Ni, Yan Wu, Gang Chen, Liangdong Fan, Jung-Sik, Kim, Suddhasatwa Basu, Tanja Kallio, Ibrahim Pamuk. Standardized Procedures Important for Improving Single-Component Ceramic Fuel Cell Technology. ACS Energy Letters, 2017, 2, 2752-2755. 2021 IF=23.991.DOI: 10.1021/acsenergylett.7b00997
[81] Xinlei Huang, Sining Yun*, Jiang Zhu, Tingting Du, Chen Zhang, Xue Li. Mesophilic anaerobic co-digestion of aloe peel waste with dairy manure in the batch digester: Focusing on mixing ratios and digestate stability. Bioresource Technology, 2016, 218, 62-68. 2021 IF=11.889.DOI: 10.1016/j.biortech.2016.06.070
材料人咨訊/材料人/材料牛報道:http://www.cailiaoniu.com/22977.html
山東化工網:http://www.sdchem.com.cn/html/xincailiao/hydt/2016/0630/4230.html
X-MOL化學資訊平臺報道:http://www.x-mol.com/news/2843
[82] Sining Yun*, Jilian Nei Freitas, Ana F. Nogueira, Shahzada Ahmad, Yanmin Wang, Zhongsheng Wang. Dye-sensitized solar cells employing polymers, Progress in Polymer Science, 2016, 59, 1-40. 2021 IF=31.281.DOI: 10.1016/j.progpolymsci.2015.10.004
材料人咨訊/材料人/材料牛報道:http://www.cailiaoniu.com/45395.html
材料牛:http://www.cailiaoniu.com/45395.html
[83] Sining Yun*, Peter D. Lund, Andreas Hinsch. Stability assessment of alternative platinium free counter electrodes for dye-sensitized solar cells. Energy & Environmental Science, 2015, 8, 3495-3514. 2021 IF=39.714.DOI: 10.1039/C5EE02446C
X‐MOL資訊報道:http://www.x‐mol.com/news/1518
材料牛資訊報道:http://www.cailiaoniu.com/5555.html
[84] Sining Yun*, Anders Hagfeldt, Tingli Ma. Pt-Free Counter Electrode for Dye-Sensitized Solar Cells with High Efficiency. Advanced Materials, 2014. 26,6210-6237. 2021 IF=32.086.DOI: 10.1002/adma.201402056
[85] Sining Yun*, Hong Zhang, Huihai Pu, Junhong Chen, Anders Hagfeldt, Tingli Ma. Metal Oxide/Carbide/Carbon Nanocomposites: In Situ Synthesis, Characterization, Calculation and its Application as Efficient Counter Electrode Catalyst for Dye-Sensitized Solar Cells. Advanced Energy Materials, 2013, 3, 1407-1412. 2021 IF=29.698.DOI: 10.1002/aenm.201300242
[86] Sining Yun*, Haihui Pu, Junhong Chen, Anders Hagfeldt, Tingli Ma. Enhanced Performance of supported HfO2 Counter Electrode for Redox Couples Used in Dye-Sensitized Solar Cells. ChemSusChem, 2014, 7, 442-450. 2021 IF=9.140 .DOI: 10.1002/cssc.201301140
Top 20 Articles, in the Domain of Article 24399514, Since its Publication (2014), BioMedLib, PMID: 24399514.
[87] Sining Yun*, Mingxing Wu, Yudi Wang, Jing Shi, Xiao Lin, Anders Hagfeldt, Tingli Ma. Pt-like behavior of high-performance counter electrodes prepared from binary tantalum compounds showing high electrocatalytic activity for dye-sensitized solar cells. ChemSusChem, 2013, 26, 411-416. 2021 IF=9.140..DOI: 10.1002/cssc.201200845
Wiley China Blog精選文章,http://blog.sciencenet.cn/blog-822310-681848.html
Top 20 Articles, in the Domain of Article 23362154, Since its Publication (2013), BioMedLib, PMID: 23362154.
[88] Sining Yun*, Huawei Zhou, Liang Wang, Hong Zhang, Tingli Ma. Economical hafnium oxygen nitride binary/ternary nanocomposite counter electrode catalysts for high-efficiency dye-sensitized solar cells. Journal of Materials Chemistry A, 2013, 1, 1341-1348. 2021 IF=14.511. DOI: 10.1039/c2ta00680d
[89] Sining Yun*, Yanfang Liu, Taihong Zhang, Shahzada Ahmad. Recent advances in alternative counter electrode materials for Co-mediated dye-sensitized solar cells. Nanoscale, 2015, 7, 11877-11893. 2021 IF=8.307.DOI: 10.1039/C5NR02433A
發表中文期刊論文:
[1] 劉彥貝, 王若名, 劉娟, Taimoor Raza, 陸玉正, Rizwan Raza, 朱斌, 李松波, 安勝利, 云斯寧. CeO2@La0.6Sr0.4Co0.2Fe0.8O3-δ電解質的制備及半導體離子燃料電池性能研究[J]. 化工學報, 1-14.
[2] 蘭昆, 吳戰波, 趙澤妮, 賈凌云, 楊柳, 云斯寧. 基于多因子的太陽輻照度預測方法研究進展[J]. 太陽能學報, 2024, 45 (05): 593-601.
[3] 張麗珊, 張永偉, 后玉芝, 張陽亮, 云斯寧. 氧化鉬納米雜化物的可控構筑及催化性能研究[J]. 稀有金屬, 2024, 48 (04): 498-507.
[4] 孫夢龍, 黨姣娥, 張永偉, 劉卓磊, 云斯寧. ZIF-8/ZIF-67衍生鈷氮共修飾碳的合成及電催化性能研究[J]. 稀有金屬, 2024, 48 (02): 288-295.
[5] 張琰妮, 史加榮, 李津, 云斯寧. 融合殘差與VMD-ELM-LSTM的短期風速預測[J]. 太陽能學報, 2023, 44 (09): 340-347.
[6] 李津, 史加榮, 張琰妮, 云斯寧. 基于最大信息系數的短期太陽輻射協同估計[J]. 太陽能學報, 2023, 44 (09): 286-294.
[7] 劉娟, 陸玉正, 楊靜靜, 王若名, 朱斌, 云斯寧. Al2O3-CeO2復合電解質的制備及其半導體離子燃料電池性能[J]. 無機化學學報, 2023, 39 (09): 1699-1710.
[8] 安錦航, 李冰潔, 王凱君, 柯騰, 云斯寧. 氮摻雜蘆薈碳和磁場對厭氧共發酵系統產甲烷的協同作用[J]. 太陽能學報, 2023, 44 (06): 532-540.
[9] 楊天翔, 王銀號, 張永偉, 劉卓磊, 云斯寧. 氧化鎢納米棒團簇的制備及電催化性能[J]. 無機化學學報, 2023, 39 (02): 221-233.
[10] 賈凌云, 云斯寧, 趙澤妮, 李紅蓮, 王賞玉, 楊柳. 神經網絡短期光伏發電預測的應用研究進展[J]. 太陽能學報, 2022, 43 (12): 88-97.
[11] 樊慶揚, 孫毅超, 楊放, 宋延興, 于新海, 云斯寧. C2-Si:一種新型單斜相硅的同素異形體(英文)[J]. Chinese Journal of Chemical Physics, 2022, 35 (06): 945-956.
[12] 趙澤妮, 云斯寧, 賈凌云, 史加榮, 賀寧, 楊柳. 基于統計模型的短期風能預測方法研究進展[J]. 太陽能學報, 2022, 43 (11): 224-234.
[13] 王支國, 鄧瑩瑩, 黨姣娥, 張永偉, 張麗珊, 阿鑫, 云斯寧. Fe/Cu修飾氮摻雜碳納米管的構筑及催化性能[J]. 無機化學學報, 2022, 38 (11): 2181-2190.
[14] 黨長偉, 張永偉, 韓鳳, 黨姣娥, 劉卓磊, 王銀號, 鄧瑩瑩, 云斯寧. ZnMoO4/蘆薈衍生多孔碳的化學共沉淀法制備及催化性能[J]. 無機化學學報, 2022, 38 (03): 489-500.
[15] 劉卓磊, 李靜文, 孫夢龍, 張永偉, 黨長偉, 云斯寧. MnWO4/生物質衍生碳納米復合催化劑的制備及催化性能[J]. 無機化學學報, 2021, 37 (12): 2219-2226.
[16] 樊慶揚, 吳楠, 陳帥銘, 江莉, 張偉, 于新海, 云斯寧. P213 BN: a novel large-cell boron nitride polymorph[J]. Communications in Theoretical Physics, 2021, 73 (12): 163-171.
[17] 王曦, 張永偉, 司藝銘, 王銀號, 云斯寧. MNbO4/生物質碳復合催化劑的制備和催化性能研究[J]. 功能材料, 2021, 52 (10): 10008-10015.
[18] 劉恒, 樊慶揚, 楊放, 于新海, 張偉, 云斯寧. tP40 carbon:A novel superhard carbon allotrope[J]. Chinese Physics B, 2020, 29 (10): 454-462.
[19] 王怡, 陳琳風, 王文懷, 馮琳琳, 柴寶華, 范攀, 丁卓, 云斯寧, 徐鴻飛. 改性石榴皮生物炭對水中低濃度硝氮的吸附性能研究[J]. 西安建筑科技大學學報(自然科學版), 2019, 51 (06): 899-904.
[20] 孟立建, 楊濤, 云斯寧, 李燦. Effect of hydroxyl on dye-sensitized solar cells assembled with TiO2 nanorods[J]. Chinese Physics B, 2018, 27 (01): 79-83.
[21] 石鯨, 高勇, 王曉莉, 云斯寧. Electronic,Elastic and Piezoelectric Properties of Two-Dimensional Group-Ⅳ Buckled Monolayers[J]. Chinese Physics Letters, 2017, 34 (08): 136-139.
[22] 方雯, 云斯寧, 黃欣磊, 后玉芝, 朱江, 李雪. 碳化生物質在AD/DSSCs中的應用[J]. 中國材料進展, 2017, 36 (04): 55-60.
[23] 王曉東, 云斯寧, 張太宏, 尹洪峰, 徐德龍. 硅烷偶聯劑表面改性玄武巖纖維增強復合材料研究進展[J]. 材料導報, 2017, 31 (05): 77-83.
[24] 胡謝利, 云斯寧, 尚建麗. 生物質燃料壓縮成型技術研究進展[J]. 化工新型材料, 2016, 44 (09): 42-44.
[25] 杜婷婷, 云斯寧, 黃欣磊, 朱江, 李晶, 景紅梅. 功能復合添加劑對牛糞厭氧發酵的影響[J]. 可再生能源, 2016, 34 (06): 936-942.
[26] 杜婷婷, 云斯寧, 朱江, 黃欣磊, 張仙梅, 曾漢候. 生物質廢棄物厭氧發酵的研究進展[J]. 中國沼氣, 2016, 34 (02): 46-52.
[27] 張仙梅, 云斯寧, 杜玉鳳, 蓋國勝, 楊玉芬, 何振全. 微晶化磷鉀礦粉催化牛糞厭氧消化試驗[J]. 農業機械學報, 2016, 47 (05): 183-190.
[28] 張太宏, 云斯寧, 李晶, 劉艷芳, 周笑, 后玉芝, 方雯. 染料敏化太陽能電池合金對電極材料[J]. 科學通報, 2016, 61 (Z1): 478-488.
[29] 張陳樂, 張培新, 云斯寧, 李永亮, 何挺樹. 染料敏化太陽能電池過渡金屬化合物對電極制備方法研究進展[J]. 無機材料學報, 2016, 31 (02): 113-122.
[30] 朱江, 云斯寧, 杜婷婷, 黃欣磊. 檸檬酸對牛糞厭氧發酵產沼氣的影響研究[J]. 可再生能源, 2015, 33 (12): 1861-1865.
[31] 張仙梅, 云斯寧, 杜玉鳳, 杜婷婷, 蓋國勝, 張萬欽. 沼氣厭氧發酵生物催化劑研究進展與展望[J]. 農業機械學報, 2015, 46 (05): 141-155.
[32] 云斯寧, 孫毅, 甘艷萍, 李玉祥. Al-ZnO光電納米材料的水熱合成及電學性能[J]. 硅酸鹽學報, 2012, 40 (02): 294-299.
[33] 云斯寧, 王曉莉, 朱建輝, 石鯨, 徐德龍. Bi摻雜(Ba,Sr,Ca)TiO3陶瓷的結構及介電和鐵電性能(英文)[J]. 硅酸鹽學報, 2009, 37 (09): 1544-1549.
[34] 馮瓊, 云斯寧, 惠攀, 李永鵬, 王曉龍, 徐德龍. 鈉鈣粉作為添加劑制備赤泥激發偏高嶺土膠凝材料[J]. 非金屬礦, 2009, 32 (02): 36-39+78.
[35] 范金禾, 李輝, 云斯寧, 魏洪恩, 徐德龍. 國際水泥工業CO2排放計算及減排措施[J]. 化工環保, 2009, 29 (01): 31-34.
[36] 云斯寧, 馮瓊, 惠攀, 李永鵬, 徐德龍. 高鈣粉煤灰作為添加劑制備赤泥偏高嶺土膠凝材料[J]. 西安建筑科技大學學報(自然科學版), 2008, 40 (06): 745-750+779.
[37] 馮瓊, 云斯寧, 李輝, 劉龍, 徐德龍. 芒硝工業尾礦制備堿激發偏高嶺土膠凝材料[J]. 西安建筑科技大學學報(自然科學版), 2008, 40 (06): 800-805.
[38] 云斯寧, 王曉莉, 徐德龍, 李輝, 羅平生, 孫曉量, 楊雪, 烏李瑛. (Ba1-xCax)1-1.5yBiyTiO3陶瓷的介電弛豫行為和線性介電響應[J]. 硅酸鹽學報, 2008, (03): 271-276.
[39] 云斯寧, 王曉莉. 改進的工藝路線制備化學計量比的PZN基鈣鈦礦陶瓷(英文)[J]. 稀有金屬材料與工程, 2006, (S2): 267-271.
[40] 云斯寧, 王曉莉, 孫曉亮. Ba1-xSrxTi0.88Sn0.12O3陶瓷結構與介電性能的研究[J]. 材料工程, 2006, (09): 49-52.
[41] 曹文娟, 王曉莉, 云斯寧. (Na1/4Bi3/4)(Mg1/4Ti3/4)O3新材料的制備及性能研究[J]. 壓電與聲光, 2006, (04): 458-460.
[42] 云斯寧, 王曉莉, 李亞兵. Pb(Zn1/3Nb2/3)O3-Ba(Zn1/3Nb2/3)O3鐵電陶瓷結構與性能的研究(英文)[J]. 功能材料, 2006, (03): 483-486+491.
[43] 云斯寧, 王曉莉. Ba添加方式對PZN基陶瓷介電性能和結構的影響[J]. 功能材料與器件學報, 2006, (01): 19-22.
[44] 云斯寧, 王曉莉. (Ba1-xSrx/2Cax/2)TiO3陶瓷的介電弛豫特征和鐵電性能[J]. 硅酸鹽學報, 2006, (02): 142-146.
[45] 云斯寧,王曉莉,曹文娟. 弛豫鐵電陶瓷最佳退火條件的正交試驗法[J]. 電子元件與材料, 2005, (09): 1-4.
[46] 云斯寧,王曉莉. 改進的兩步法制備PZN-PT-BT鐵電陶瓷[J]. 功能材料, 2005, (05): 671-674.
[47] 云斯寧,王曉莉. Pb(Zn1/3Nb2/3)O3基陶瓷預合成和燒結工藝的研究[J]. 硅酸鹽通報, 2005, (02): 3-7.
[48] 云斯寧,章道運,于仁紅,蔣明學. 鎂鉻磚在大型干法水泥回轉窯燒成帶的損毀[J]. 耐火材料, 2004, (04): 238-241.
[49] 云斯寧,蔣明學,符國力,謝建海,王黎,唐仕英. 納米陶瓷超塑性及應用[J]. 陶瓷, 2003, (03): 20-24.
[50] 云斯寧,蔣明學,李勇,劉建龍,唐仕英,王黎. AlON陶瓷材料的結構、性質及應用[J]. 耐火材料, 2003, (03): 173-176.
[51] 云斯寧,蔣明學,高里存,唐仕英. 垃圾焚燒爐用耐火材料的使用現狀及發展趨勢[J]. 西安建筑科技大學學報(自然科學版), 2002, (02): 165-169.
[52] 王黎,張軍戰,唐仕英,云斯寧,蔣明學. 鎂鉻合成料對鎂鋁鉻搗打料性能的影響[J]. 耐火材料, 2002, (02): 99-101.
會議論文:
[1] 羅超偉, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Mengmeng Zhang, Ke Wang & 云斯寧. (2024). Designing nitrogen-enriched heterogeneous NiCoS4@FeCoS4-NC for efficient triiodide reduction. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.206).
[2] Zikang Li, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Mengmeng Zhang, Ke Wang & 云斯寧. (2024). Construction and catalytic properties of porous spherical carbon-coupled Ni-Mo bimetallic heterostructures. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.207).
[3] 張萌萌, Tianxiang Yang, Guangping Yang, Haijiang Yang, Zhiguo Wang, Ke Wang & 云斯寧. (2024). 3D Co-doped Cu3P/NC octahedra embedded in 2D MXene nanosheets for hydrogen evolution reaction and triiodide reduction reaction. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.208).
[4] 張添益, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Mengmeng Zhang, Ke Wang & 云斯寧. (2024). Enhanced catalytic performance of IRR and HER by Weyl Semi-Metallic W1-xMoxTe2. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.216).
[5] 陳昊祎, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Mengmeng Zhang, Ke Wang & 云斯寧. (2024). Enhanced catalytic performance of IRR and HER by phosphorus vacancy-enriched molybdenum-doped WP2. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.217).
[6] 許曉蓉, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Mengmeng Zhang, Ke Wang & 云斯寧. (2024). Construction of 2D-2D Bi-based double heterojunctions to enhance the electrocatalytic activity of hydrogen evolution and triiodide reduction reactions. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.296).
[7] 楊光平, Tianxiang Yang, Zhiguo Wang, Haijiang Yang & 云斯寧. (2024). High-selective Schottky junction catalysts for dye-sensitized solar cells:Modulation of energy band structure and enhancement of surface reaction. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.297).
[8] 楊天翔, Guangping Yang, Haijiang Yang, Zhiguo Wang, Ruoming Wang, Rou Feng & 云斯寧. (2024). Interfacial electron modulation of 3D nanoblock nitrogen-modified carbon with binary metal selenide heterojunctions as stable and efficient electrode materials for advanced energy conversion devices. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.298).
[9] 云斯寧, Zan Gao, Menglong Sun, Dan Qiao, Yinhao Wang, Guangping Yang & Changwei Dang. (2024). Designing heterojunction catalyst induced Built-in electric field for iodine reduction and hydrogen precipitation reactions. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.307).
[10] 王科, Tianxiang Yang, Guangping Yang, Haijiang Yang, Zhiguo Wang, Mengmeng Zhang & 云斯寧. (2024). Strengthening heterogeneous strain in FeCoNiMo-based high-entropy alloy for boosting triiodide reduction and hydrogen evolution reaction. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.251).
[11] 王支國,Guangping Yang,Tianxiang Yang,Haijiang Yang,Rou Feng,Mengmeng Zhang... & 云斯寧. (2024). In situ growth of P-doped CoSe2 nanospheres on Ti3C2Tx MXene heterostructure hybrid for efficient hydrogen evolution and triiodide reduction reaction. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.252).
[12] 楊海江, Guangping Yang, Tianxiang Yang, Zhiguo Wang, Rou Feng & 云斯寧. (2024). High entropy alloys bifunctional catalysts for hydrogen evolution and triiodide reduction reactions. (eds.) 第十一屆新型太陽能材料科學與技術學術研討會論文集 (pp.253).
[13] 楊天翔,Guangping Yang,Zan Gao,Dan Qiao,Zhiguo Wang,Mengmeng Zhang... & 云斯寧. (2023). MOF-on-MOF strategy to design nitrogen-doped carbon incorporated FeSe2/CoSe2 hollow nanoboxes for IRR/HER. (eds.) 第十屆新型太陽能材料科學與技術學術研討會論文集 (pp.301).
[14] 喬丹,Jiaoe Dang,Yongwei Zhang,Guangping Yang,Tianxiang Yang,Zan Gao... & 云斯寧. (2023). N-doped carbon confined carbides and metal cobalt with dual Mott-Schottky heterojunctions for efficient tri-iodide reduction. (eds.) 第十屆新型太陽能材料科學與技術學術研討會論文集 (pp.305).
[15] 楊光平, Tianxiang Yang, Zhiguo Wang, Zan Gao, Dan Qiao & 云斯寧. (2023). Directional doping-modified B-C3N4@Fe3C Mott-Schottky junction for coordinating efficient iodide reduction and hydrogen evolution reaction. (eds.) 第十屆新型太陽能材料科學與技術學術研討會論文集 (pp.306).
[16] 云斯寧. (2023). Metal-N-C dual-function catalyst for IRR/HER. (eds.) 第十屆新型太陽能材料科學與技術學術研討會論文集 (pp.307).
[17] 張萌萌,Guangping Yang,Tianxiang Yang,Zan Gao,Dan Qiao,Haijiang Yang... & 云斯寧. (2023). Co-doped MOF derived Cu3P heterostructures on MXene for promoting triiodide reduction and hydrogen evolution reactions. (eds.) 第十屆新型太陽能材料科學與技術學術研討會論文集 (pp.308).
[18] 云斯寧. (2022). Metal-N-C Catalysts for DSC/SC/AF. (eds.) 第二屆全國太陽能電池材料與器件大會論文集 (pp.49).
[19] 張永偉, Jiaoe Dang, Guangping Yang, Yi Du, Tianxiang Yang & 云斯寧. (2022). Implanted bimetal-nitrogen active sites enhance the catalytic activity of ZIF-derived porous carbon for IRR and HER. (eds.) 第二屆全國太陽能電池材料與器件大會論文集 (pp.85).
[20] 云斯寧. (2022). Metal-N-C Catalyst for Solar Cells. (eds.) 第九屆新型太陽能材料科學與技術學術研討會論文集 (pp.259).
[21] 云斯寧. (2021). based nanohybrids:from nano-size to single atom catalyst. (eds.) 2021全國太陽能電池材料器件與技術大會論文集 (pp.16).
[22] 張永偉, Jiaoe Dang, Changwei Dang, Yingying Deng, Zhuolei Liu, Yinhao Wang & 云斯寧. (2021). Dual metal-Nx active sites co-modified ZIF-derived porous carbon: Effective catalysts for boosting triiodide reduction reaction. (eds.) 2021全國太陽能電池材料器件與技術大會論文集 (pp.85-86).
[23] 鄧瑩瑩,Changwei Dang,Zhuolei Liu,Yinhao Wang,Lishan Zhang,Shuangxi Yuan... & 云斯寧. (2021). Sulphur-doped nitrogen-carbon composite transition metal telluride nanohybrids: A highly efficient IRR and HER electrode catalyst. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.297).
[24] 孫夢龍,Yongwei Zhang,Lishan Zhang,Jiaoe Dang,Shuangxi Yuan,Xi Wang... & 云斯寧. (2021). ZIF-8/ZIF-67-derived sea urchin-like carbon dodecahedron: An efficient electrocatalyst for dye-sensitized solar cells. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.298).
[25] 王曦,Jiaoe Dang,Lishan Zhang,Menglong Sun,Shuanngxi Yuan,Yinhao Wang... & 云斯寧. (2021). Well-designed dual metal Nb/Ta co-modified nitrogen doped carbon: An active sites-enriched catalyst for efficiently catalyzing triiodide reduction. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.299).
[26] 袁雙喜, Yongwei Zhang, Lishan Zhang, Jiaoe Dang, Xi Wang, MengLong Sun & 云斯寧. (2021). ZIF-8 derived nitrogen/transition bimetal co-doped porous carbon for counter electrode of dye-sensitized solar cell. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.302).
[27] 云斯寧. (2021). Nanohybrids: From Nano-size to Single Atom catalyst. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.303).
[28] 張永偉,Jingjing Yang,Jiaoe Dang,Ruoming Wang,Changwei Dang,Yingying Deng... & 云斯寧. (2021). Bimetal Cu/Ni-Nx active sits co-modified ZIF-8 derived porous carbon for boosting triiodide reduction and hydrogen evolution reaction. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.304).
[29] 黨姣娥,Yongwei Zhang,Zhuolei Liu,Yinhao Wang,Changwei Dang,Yingying Deng... & 云斯寧. (2021). Metal-organic-framework-derived hybrid carbon nanorod as a counter electrode in dye-sensitized solar cell. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.305).
[30] 黨長偉,Yongwei Zhang,Menglong Sun,Jiaoe Dang,Zhuolei Liu,Yinhao Wang... & 云斯寧. (2021). Facile fabrication of flake-like NiFe2O4 derived from the Ni-Fe layered double hydroxide for enhancing the triiodide reduction reaction in dyesensitized solar cells. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.306).
[31] 劉卓磊,Changwei Dang,Yingying Deng,Yinhao Wang,Jiaoe Dang,Yongwei Zhang... & 云斯寧. (2021). ZIF-derived carbon/molybdenum disulfide composites as a counter electrode for dye-sensitized solar cell. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.307).
[32] 王銀號,Zhuolei Liu,Changwei Dang,Yingying Deng,Xi Wang,Lishan Zhang... & 云斯寧. (2021). Phosphorus doped tungsten-based composite material as the counter electrode for dye-sensitized solar cells. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.308).
[33] 張麗珊,Menglong Sun,Xi Wang,Shuangxi Yuan,Yingying Deng,Yinhao Wang... & 云斯寧. (2021). Nickel modified nitrogen-doped carbon composites as high-efficiency electrocatalysts for triiodide reduction reactions. (eds.) 第八屆新型太陽能材料科學與技術學術研討會論文集 (pp.309).
[34] Nosheen Zafar,Brundha Chidarbaram,Yongwei Zhang,Asim Arshad,Menglong Sun,Feng Han... & 云斯寧. (2020). Incorporated Nb/Co Integrated MOF Derived Nitrogen Doped Carbon as Highly Robust Catalyst for Triiodide Reduction Reaction. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.342).
[35] Asim Arshad,Nosheen Zafar,Menglong Sun,Brundha Chidambaram,Yongwei Zhang,Lishan Zhang... & 云斯寧. (2020). ZIF-8 derived N-doped carbon with enhanced metal-N active sites:A multi-functional hybrid electrocatalyst for tri-iodide reduction and hydrogen evolution reaction. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.340).
[36] Chidambaram Brundha, Nosheen Zafar, Menglong Sun, Asim Arshad, Yongwei Zhang & 云斯寧. (2020). N-Doped carbon derived from ZIF-8 coated bimetals(Sn-Mg) as a highly efficient counter electrode electro-catalyst for triiodide reduction. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.341).
[37] 黨姣娥,Menglong Sun,Yongwei Zhang,Feng Han,Yiming Si,Shuangxi Yuan... & 云斯寧. (2020). Metal-organic-framework-based double-shelled nanoboxes N-C@Co-N-C bifunctional electrocatalyst for efficient HER and IRR. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.343).
[38] 韓鳳,Xinying Qiao,Jingwen Li,Yiming Si,Yongwei Zhang,Jiaoe Dang... & 云斯寧. (2020). 3D network aloe waste-derived carbon-supported molybdenum-based bimetallic compound as counter electrode for dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.344).
[39] 李靜文,Xinying Qiao,Yiming Si,Feng Han,Yongwei Zhang,Jiaoe Dang... & 云斯寧. (2020). Biomass-derived carbon boosted catalytic properties of tungsten-based nanohybrids for accelerating the triiodide redu ction in dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.345).
[40] 喬昕瑩,Jingwen Li,Feng Han,Yiming Si,Yongwei Zhang,Jiaoe Dang... & 云斯寧. (2020). Honeycomb-like bio-based carbon decorated with tantalum-based compound as efficient and durable electrocatalysts for dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.346).
[41] 司藝銘,Feng Han,Yongwei Zhang,Jingwen Li,Xinying Qiao,Menglong Sun... & 云斯寧. (2020). Nano-sized niobium-based oxides anchored on biomass-derived porous carbon hybrids as bifunctional catalysts for dye-sensitized solar cells and alkaline hydrogen evolution. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.347).
[42] 孫夢龍,Yongwei Zhang,Lishan Zhang,Jiaoe Dang,Shuangxi Yuan,Xi Wang... & 云斯寧. (2020). ZIF-8/ZIF-67-derived cobalt,nitrogen co-doped carbon dodecahedron:An efficient electrocatalyst for dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.348).
[43] 王曦,Lishan Zhang,Menglong Sun,Shuanngxi Yuan,Yongwei Zhang,Xinying Qiao... & 云斯寧. (2020). Transition metal niobium-modified nitrogen doped carbon material as counter electrode for dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.349).
[44] 袁雙喜,Yongwei Zhang,Lishan Zhang,Jiaoe Dang,Xi Wang,Yiming Si... & 云斯寧. (2020). ZIF-8 derived nitrogen/transition metal co-doped porous carbon for counter electrode of DSSCs. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.350).
[45] 張麗珊,Menglong Sun,Xi Wang,Shuangxi Yuan,Feng Han,Xinying Qiao... & 云斯寧. (2020). Iron modified nitrogen-doped carbon composites as high-efficiency electrocatalysts for triiodide reduction reactions. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.351).
[46] 張永偉,Menglong Sun,Jiaoe Dang,Xi Wang,Lishan Zhang,Shuangxi Yuan... & 云斯寧. (2020). Cu,Ni modified ZIF-8 derived porous carbon:An efficient and low cost catalyst for dye-sensitized solar cells. (eds.) 第七屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.352).
[47] 闕美丹 & 云斯寧. (2019). 鈣鈦礦量子點誘導富銫薄膜表面增強電池的穩定性. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.59).
[48] Yasir Abbas,Xiaodong Wang,Asim Arshad,Yongwei Zhang,Jiaoe Dang,Chen Wang... & 云斯寧. (2019). Layer-stacking bio-based carbon derived from sunflower stalk as counter electrode for Dye-sensitized solar cell and supercapacitors. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.388).
[49] Asim Arshad,Yiming Si,Feng Han,Chen Wang,Ziqi Wang,Yangliang Zhang... & 云斯寧. (2019). Transition metal oxides integrated bio-based porous carbon as superior counter electrode catalysts for dye-sensitized solar cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.389).
[50] Nosheen,Zafar,Asim Arshad,Yongwei Zhang,Yiming Si,Feng Han,Chen Wang... & 云斯寧. (2019). Recent advancements in bio-based carbon enhanced bimetal oxides as counter electrode catalysts for dye-sensitized solar cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.390).
[51] 黨姣娥,Feng Han,Yongwei Zhang,Yiming Si,Yasir Abbas,Asim Arshad... & 云斯寧. (2019). Integrated Approach to Improve Electrocatalytic Activity of Tantalum Derivatives as Counter Electrode in Dye-sensitized Solar Cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.391).
[52] 韓鳳,Chen Wang,Yiming Si,Yangliang Zhang,Jingwen Li,Xinying Qiao... & 云斯寧. (2019). Bio-based carbon supported molybdenum-based oxides as counter electrode for dye-sensitized solar cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.392).
[53] 喬昕瑩,Jingwen Li,Feng Han,Yiming Si,Yangliang Zhang,Yasir Abbas... & 云斯寧. (2019). Tantalum-based bimetallic oxide deposited on bio-carbon as counter electrode catalysts for dye-sensitized solar cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.393).
[54] 王晨,Hongfei Xu,Ziqi Wang,Feng Han,Yangliang Zhang,Yiming Si... & 云斯寧. (2019). Dual functional application of pomelo peel-derived bio-based carbon with controllable morphologies: An efficient catalyst for triiodide reduction and accelerant for anaerobic digestion. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.394).
[55] 王子齊,Chen Wang,Yangliang Zhang,Yiming Si,Feng Han,Yasir Abbas... & 云斯寧. (2019). Acorn shell-derived porous bio-based carbon for high-performance dye-sensitized solar cells and supercapacitors. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.395).
[56] 張陽亮,Chen Wang,Ziqi Wang,Hongfei Xu,Yiming Si,Feng Han... & 云斯寧. (2019). Bio-based carbon supported flower-like CoWO4 as counter electrode catalysts in dye-sensitized solar cells. (eds.) 第六屆新型太陽能電池材料科學與技術學術研討會論文集 (pp.396).
[57] 王子齊, Chen Zhang, Chen Wang, Hongfei Xu, Yangliang Zhang & 云斯寧. (2018). Honeycomb-like bio-based carbon for high-performance dye-sensitized solar cells and anaerobic digestion. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.49).
[58] 徐鴻飛, Weng Fang, Chen Wang, Ziqi Wang, Yangliang Zhang & 云斯寧. (2018). Application of carbon material derived from biomass in dye-sensitized solar cells and anaerobic digestion. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.50).
[59] 王晨, Ziqi Wang, Hongfei Xu, Yangliang Zhang, Feng Han, Yiming Si & 云斯寧. (2018). Niobium-based bimetallic compounds as counter electrode in dye-sensitized solar cells. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.32).
[60] 方雯, Xiao Zhou, Yuzhi Hou, Xiaodong Wang, Ziqi Wang, Yangliang Zhang & 云斯寧. (2018). Application of bio-based carbon in dye-sensitized solar cells and anaerobic digestion. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.47).
[61] 后玉芝, Xiao Zhou, Chen Wang & 云斯寧. (2018). Molybdenum-based oxide as counter electrode catalysts in dye-sensitized solar cells. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.48).
[62] 張婷婷 & 云斯寧. (2018). Single-atom catalyst of transition metals(Mo,Nb,W,Ta/Co) composite with nitrogen-doped carbon for dye-sensitized solar cells. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.51).
[63] 張陽亮, Ziqi Wang, Chen Wang, Hongfei Xu, Jiageng Chen, Jingwen Li & 云斯寧. (2018). Bio-carbon enhanced tungsten-based bimetal oxides as counter electrode catalysts in dye-sensitized solar cells. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.52).
[64] 周笑, Yuzhi Hou, Yangliang Zhang, Hongfei Xu, Jiageng Chen & 云斯寧. (2018). Bio-based spherical carbon supported tantalum-based bimetallic oxides as counter electrodes catalysts for dye-sensitized solar cells. (eds.) 第五屆新型太陽能電池學術研討會摘要集(納晶敏化太陽能電池篇) (pp.53).
[65] 后玉芝, Xiao Zhou, Wen Fang, Chen Wang & 云斯寧. (2017). Molybdenum-Based Compounds as Counter Electrode Catalysts in Dye-Sensitized Solar Cells. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.360). 西安建筑科技大學,材料與礦資學院,功能材料研究所;陜西省納米材料與納米技術重點實驗室;
[66] 李晶, Xiao Zhou, Yuzhi Hou, Wen Fang, Taihong Zhang, Yanfang Liu & 云斯寧. (2017). Incorporating Transition Metals(Ta/Co) into Nitrogen-Doped Carbon as CEs for DSSCs. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.361).
[67] 王晨, Yuzhi Hou, Xiao Zhou, Ziqi Wang, Hongfei Xu & 云斯寧. (2017). Application of Niobium-based Bimetal Oxides in Dye-sensitized Solar Cells. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.363).
[68] 王子齊, Yanfang Liu, Wen Fang, Chen Zhang, Chen Wang, Hongfei Xu & 云斯寧. (2017). Application of Tungsten-Based Compounds in Renewable Energy. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.364).
[69] 周笑, Yunzhi Hou, Wen Fang, Jing Li, Hongfei Xu & 云斯寧. (2017). Application of Novel Tantalum-Based Oxides in DSCs. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.365). 西安建筑科技大學,材料與礦資學院,功能材料研究所;陜西省納米材料與納米技術重點實驗室;
[70] 方雯, Xiao Zhou, Yuzhi Hou, Xiaodong Wang, Ziqi Wang, Yangliang Zhang & 云斯寧. (2017). Biomass-Derived Carbon as Catalysts and Accelerant for Dye-Sensitized Solar Cells and Anaerobic Digestion. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.459).
[71] 王曉東,Wen Fang,Chen Zhang,Xue Li,Ziqi Wang,Hongfei Xu... & 云斯寧. (2017). Promising Porous Carbon Derived from Waste Biomass for Dye-Sensitized Solar Cells and Electrochemical Capacitors. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.460).
[72] 張琛, Wen Fang, Xiaodong Wang, Ziqi Wang, Feng Han, Siyao Wan & 云斯寧. (2017). Application of Biochar Materials in Dye-Sensitized Solar Cells and Anaerobic Digestion. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.461).
[73] 張太宏,Xue Li,Xinlei Huang,Yuzhi Hou,Yanfang Liu,Xiao Zhou... & 云斯寧. (2017). Fabrication of Niobium-Based Compounds and Their Applications in Dye-Sensitized Solar Cells and Anaerobic Digestion. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.462).
[74] 劉艷芳, Xiao Zhou, Yuzhi Hou, Ziqi Wang, Taihong Zhang & 云斯寧. (2017). Intrinsic Origin of Superior Catalytic Properties of Tungsten-based Catalysts in Dye-sensitized Solar Cells. (eds.) 第四屆新型太陽能電池學術研討會論文集 (pp.362).
[75] 云斯寧, 張太宏, 劉行, 劉艷芳 & 孟勝. (2016). Physical and chemical origin of transition metal compounds counter electrode catalysts for dye-sensitized solar cells. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.211).
[76] 方雯, Yanfang Liu, Taihong Zhang, Xiao Zhou, Yuzhi Hou, Jing Li & 云斯寧. (2016). Carbon derived from waste biomass as catalysts and accelerant for dye-sensitized solar cells and anaerobic digestion. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.212).
[77] 李晶, Yanfang Liu, Taihong Zhang, Xiao Zhou, Yuzhi Hou, Wen Fang & 云斯寧. (2016). A nitrogen-doped carbon-based catalyst hybridizing non-precious mental for dye-sensitized solar cells. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.213).
[78] 劉艷芳, Xiao Zhou, Taihong Zhang, Yuzhi Hou, Wen Fang, Jing Li & 云斯寧. (2016). First-principle calculations and molecular dynamics simulations of dye-sensitized solar cells with tungsten-based compounds catalysts. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.214).
[79] 后玉芝, Taihong Zhang, Yanfang Liu, Xiao Zhou, Wen Fang, Jing Li & 云斯寧. (2016). Hafnium and nitrided hafnium as catalysts for dye-sensitized solar cells. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.304).
[80] 張琛, Taihong Zhang, Yanfang Liu, Xiao Zhou, Yuzhi Hou, Wen Fang & 云斯寧. (2016). A novel biochar derive from water hyacinth:Apply to solar cells and anaerobic digestion. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.305).
[81] 張太宏, Yunzhi Hou, Yanfang Liu, Xiao Zhou, Wen Fang, Jing Li & 云斯寧. (2016). Use of niobium-based oxides/oxynitrides/nitrides in dye-sensitized solar cells and anaerobic digestion. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.306).
[82] 周笑, Yanfang Liu, Taihong Zhang, Yunzhi Hou, Wen Fang, Jing Li & 云斯寧. (2016). Application of tantalum-based compounds in renewable energy. (eds.) 第三屆新型太陽能電池學術研討會論文集 (pp.307).
[83] 云斯寧. (2015). TMCs多功能催化劑在DSSC和AF的應用. (eds.) 2015中國(國際)功能材料科技與產業高層論壇摘要集 (pp.67-68).
[84] 云斯寧, Taihong Zhang, Yanfang Liu, Xiao Zhou, Yuzhi Hou, Wen Fang & 張培新. (2015). An Integrated Device based on Dye-sensitized Solar Cells and Li-ion Battery. (eds.) 第二屆新型太陽能電池學術研討會論文集 (pp.134).
[85] 張太宏, Yanfang Liu, Xiao Zhou, Yuzhi Hou, Wen Fang, Jing Li & 云斯寧. (2015). Investigation of Bi-metal and their compounds as catalysts for solar cells. (eds.) 第二屆新型太陽能電池學術研討會論文集 (pp.206).
[86] 劉艷芳, Taihong Zhang, Xiao Zhou, Yuzhi Hou, Wen Fang, Jing Li & 云斯寧. (2015). First-principle calculations and molecular dynamics simulations of transition metal compounds catalysts for counter electrode of dye-sensitized solar cells. (eds.) 第二屆新型太陽能電池學術研討會論文集 (pp.221).
[87] 杜婷婷, Jiang Zhu, Xinlei Huang, Xianmei Zhang, Chen Zhang, Xue Li & 云斯寧. (2015). Synthesis of transition metal oxides and their applications as multifunctional catalysts in solar cells and anaerobic fermentation. (eds.) 第二屆新型太陽能電池學術研討會論文集 (pp.228).
[88] 云斯寧 & 馬廷麗. (2014). Pt-free Counter Electrode of Dye-Sensitized Solar Cells with High Efficiency. (eds.) 第一屆新型太陽能電池暨鈣鈦礦太陽能電池學術研討會論文集 (pp.114).
研究團隊(Research Team)
1) 功能材料研究所→新能源材料教學團隊:
團隊帶頭人:云斯寧 (教授 博導)
2) 材料科學與工程學院→新能源材料科研團隊:
團隊帶頭人:云斯寧 (教授 博導)
3) 陜西省納米材料與納米技術重點實驗室→新能源納米材料與器件化技術應用團隊
方向負責人:云斯寧 (教授 博導)
4) 西安建筑科技大學新能源材料科技創新“引智基地”
基地負責人:云斯寧 (教授 博導)
所獲榮譽:
1. 2018年,獲陜西省“特支計劃”科技創新領軍人才。
2. 2017年,獲陜西省中青年科技創新領軍人才。
3.云斯寧.西安建筑科技大學,寶鋼優秀教師獎,2018。
4.云斯寧.西安建筑科技大學,青年教師標兵,2014。
所獲獎勵:
1.云斯寧. 西安建筑科技大學科技進步獎一等獎(第一完成人),2017。
2.云斯寧.陜西高等學?茖W技術獎一等獎(第一完成人),2018。
3.云斯寧.陜西省科學技術獎二等獎(第一完成人),2018。
4.云斯寧.《染料敏化太陽能電池—從理論基礎到技術應用》,中國石油和化學工業優秀出版物獎(圖書獎),中國石油和化學工業聯合會,二等獎,2014。
5.云斯寧.“圣和圣”杯最受學生歡迎的主講教師提名獎,西安建筑科技大學,2011。
6.云斯寧.西安交通大學優秀博士論文 (14/423),西安交通大學,學位論文獎,2007。
7.云斯寧.Wiley材料學高峰論壇-西安Highly-cited Author Award(高被引作者獎), 2016。
8.云斯寧.2017年獲中國國際光伏大會Best Presentation Award(最佳報告獎),2017。
國際會議(International Conferences)
1.2015中國(國際)功能材料科技與產業高層論壇大會 組織委員會委員
Member of Organizing Committee, 2015 China/international Functional Materials
Technology and Industry Forum, Oct.30-Nov.1, 2015, Xiangtan, China.
2.2017中國新能源材料與器件第一屆學術會議 學術委員會委員
Member of Scientific Committee, the 1stConference on New Energy Materials and Devices,Sep. 20-22, 2017, Changsha, China.
3.2017 中國(贛州)國際新能源汽車動力電池高峰論壇暨第九屆中國儲能與動力電池及其關鍵材料學術研討與技術交流會 學術委員會委員
Member of Scientific Committee, 2017 China (Ganzhou) International New Energy Vehicle Power Battery Summit Forum and the 9thChina Energy and Power Battery and its Key Materials Academic Seminar and Technical Exchange, Oct. 13-16, 2017, Ganzhou, Jiangxi, China.
http://www.cailiaoniu.com/101846.html
4.中國-歐洲先進燃料電池論壇暨第三屆江蘇-歐洲新能源國際會議氫能與燃料電池專場會議 學術委員會委員
Member of Scientific Committee, the 3rd Jiangsu-Europe International Conference on New Energy and Hydrogen & Fuel Cells Forum, Dec. 8-Dec.13, 2017, Nanjing and Wuhan, China.
http://www.seu-solarcenter.org/newsSelect.php?n_id=sjjsozxnyzg
http://www.seu-solarcenter.org/newsSelect.php?n_id=sjjsozxnyzg1
5.2017第十二屆綠色能源國際會議 共同主席
Co-Chair, the 12thInternational Green Energy Conference (IGEC-XII),July 31-August 3, 2017, Xi an, China.
http://www.igec12-xjtu.com/lists/conferencecommittees.html
Slide
大會宣傳板
6.2017第三屆表面、涂層及納米結構材料亞太地區國際會議 共同主席
Co-Chair, the 3rdInternational Conference on Surfaces, Coatings and Nanostructured
Materials-Asia (NANOSMAT-Asia), Dec.4-7, 2017, Hongkong, China.
http://www.nanosmat-asia.com/
7.2018納米技術、納米材料和薄膜材料能源應用國際學術會議 共同主席
Co-Chair, the 5thInternational Conference on Nanotechnology,
Nanomaterials & Thin Films for Energy Applications, July 18-20, Potugal, 2018.
http://www.nanoenergy.co.uk/about.html
8.2018納米技術、納米材料和薄膜材料能源應用國際學術會議 國際咨詢委員會委員
Member of International Advisory Board, 5thInternational Conference on Nanotechnology, Nanomaterials & Thin Films for Energy Applications, July 18-20, Potugal, 2018.
http://www.nanoenergy.co.uk/committees.html
9.2018 NANOSMAT國際學術會議 國際咨詢委員會委員
Member of International Advisory Board, 2018 NANOSMAT Conference, Sep.11-14, Warsas, Poland, 2018.
http://www.nanosmat-conference.com/committees.asp
10.2019第四屆表面、涂層及納米結構材料亞太地區國際會議 主席
Chair, the 4th International Conference on Surfaces, Coatings and Nanostructured Materials-Asia (NANOSMAT-Asia), Oct.11-14, 2019, Xi an, China.
http://www.nanosmat-asia.com/
國際合作(International Collaboration)
1.Kyushu Institute of Technology (Japan)
Prof. Tingli Ma
2.Ecole polytechnique fédérale de Lausanne (EPFL) (Switzerland)
Prof. Anders Hagfeldt
3.University of Wisconsin-Milwaukee (USA)
Prof. Junhong Chen
4.Abengoa Research, C/ Energía Solar no1(Spain)
Prof. Shahzada Ahmad
5.University of Campinas-Unicamp(Brazil),
Prof. Ana F. Nogueira
6.Yonsei University (South Korean)
Prof. Sangwoo Lim
7.Aalto University (Finland)
Prof. Peter D. Lund
8.Fraunhofer Institute for Solar Energy Systems ISE (Germany)
Prof. Andreas Hinsch
9.University of Reading (UK)
Dr. Ricardo Grau-Crespo
10.Fonctions Optiques pour les Télécommunications (FOTON) (France)
Prof. Jacky Even
個人友情鏈接(Research Link):
Sining Yun’s Baidu Search website:
http://www.baidu.com/s?word=%E4%BA%91%E6%96%AF%E5%AE%81&tn=sitehao123&ie=utf-8&f=3&rsp=0
Sining Yun’s Researchgate website:
https://www.researchgate.net/profile/Sining_Yun?ev=hdr_xprf
Sining Yun’s XAUAT Research Link:
http://clxy.xauat.edu.cn/info/1028/1204.htm
http://gs.xauat.edu.cn:8021/jsp/dsDetail.jsp?id=00000001524
Sining Yun’s Frontiers Loop Website:
http://loop.frontiersin.org/people/157968/overview
Sining Yun’s Private Website:
http://xy.xauat.edu.cn/gnclyjs/listyjdw.asp?id=262&bh=2080
染料敏化太陽能電池的破局之道
——記新能源材料研究專家、西安建筑科技大學云斯寧教授
如果電池有心,想必今時今日也會感到前所未有的壓力。自從《華爾街日報》發文稱“科技世界正在因電池技術進展緩慢而百般煩惱”之后,未來科技就被描摹成了強悍而無奈的巨型機器人——制作精良、無所不能,卻因缺乏一枚高效、穩定的新能源電池而無法施展萬般抱負。西安建筑科技大學教授、新能源材料專家云斯寧因此在實驗室度過了更多周末時光,與“革命性突破”等浮夸的字眼相比,他相信腳踏實地才能更迫近真理,才能讓夢想照進現實。
堅守初心
2013年,云斯寧教授與大連理工大學馬廷麗教授牽頭,由國內眾多科研單位成就卓越的科學家參編,共同編著的《染料敏化太陽能電池——從理論基礎到技術應用》一書正式出版。作為我國第一本全面介紹染料敏化太陽能電池(DSSC)的專業書籍,它的問世,讓世界看到了在新一代太陽能電池研究領域更多的“中國可能”。與此同時,這位杰出的青年科技工作者所取得的創新性國際重要研究成果,也大大提升了西安建筑科技大學無機非金屬材料學科在國內外的行業影響力,促進了功能材料新辦專業的學科發展、推動行業技術進步和產業化進程。
那么,何謂DSSC?他又是如何與之結緣的呢?
如大家所知,太陽能作為資源豐富的可再生能源,具有獨特的開發利用潛能,而DSSC就是新一代太陽能電池的一種。“它主要是模仿光合作用原理研制的。”云斯寧向記者介紹說,“植物進行光合作用的時候,是把太陽能轉化為電能,然后再轉化為化學能,而DSSC是一個電氣化學系統。植物進行光合作用,是葉綠素在起作用,而DSSC是用染料來捕獲太陽光,把光能轉化為電能進行發電。”
2003年,云斯寧在西安交通大學攻讀博士學位,從事鈣鈦礦鐵電壓電陶瓷介電弛豫行為的研究。在廣闊的科技世界走馬觀花已經無法滿足他的求勝心,“致用”開始成為這個科研新兵最為關注的命題。偶然的機會,他看到了美國能源署和中科院關于能源科學與技術未來發展展望的行業報告,開展科研的定位逐漸清晰了起來。“當時了解到我們國家碳納米管的研究在國際上比較超前,后來我就比較關注新能源,經過逐步積累,對國家的政策、需求了解多了,焦點就集中在能源危機和環境污染兩個關鍵點上了。我們做科研必須要符合國家重大戰略需求才有意義,太陽能和生物質能又是新能源里邊兩大核心。”因此,云斯寧教授將研究定位在:一方面立足于太陽能,另一方面立足于生物質能,開展低成本、高附加值資源化循環綜合利用的基礎研究和技術開發。
因為出色的表現,云斯寧博士畢業之后,其學位論文獲2007年西安交通大學優秀博士論文,而后他又作為“引進人才”進入西安建筑科技大學工作,隨后赴韓國延世大學研修,開始涉足DSSC。“在韓國,主要是搞光陽極研究,回國之后與馬廷麗教授合作,逐漸開展對電極催化劑的研究。”他說自己近期在開展捕能與儲能一體化新能源集成器件研究。
從國外到國內,從光陽極到對電極再到集成器件,云斯寧及其研究團隊一直沿著一條主線進行探索。而這條線就是——可再生能源中對太陽能和生物質能的利用。他解釋說:“隨著人口的增加和人們生活水平的逐漸提高,對能源的需求日益增加,能源危機和環境污染日益嚴重。面對這種挑戰,我們力圖通過新能源材料的研究和開發,解決國家發展過程中的重大能源需求,并且立足于資源化循環綜合利用。”
卓越的科研才華,讓云斯寧從眾多青年科研工作者中脫穎而出,他很快被破格提升為教授和博士研究生導師,并成為了西安建筑科技大學功能材料研究所“新能源材料”研究團隊和陜西省納米材料與技術重點實驗室“新能源材料器件化應用”研究團隊的方向負責人。 他和他的研究團隊一起,對國際上該領域的研究現狀、難點、熱點開展深度研究、聯合攻關。近年,參與完成、主持國家級、省部級、地市級、校級各類項目20余項,并協助國家基金委評審青年、面上、重大項目共38項。
持續突破
和當初預料的一樣,在巨大的能源缺口面前,DSSC因其光電轉化效率高、成本低、環境友好、透明等特點,順理成章地成為了全世界矚目的科研焦點。而他與“戰友們”的堅守,也為我國在該領域國際競爭力的加強,原創性成果的爭奪提供了堅實的保障。“中國發表的研究論文,位居世界第二;知識產權數量也僅此于日本和韓國,領先于美國和其他發達國家。而國內的產業化研究也基本與世界同步,早期僅能建成500瓦的示范小工程,預計今年我國能達到20兆瓦規模的水平。”云斯寧教授對我國的科研充滿信心。
藍海似乎近在咫尺,想要突破邊界,挑戰仍然不可小覷。“研究DSSC的目的最終在于應用。而產業化面臨兩個問題:一個是DSSC的效率約為13%,與成熟的硅基電池相比有點偏低;另外一個是它的長期穩定性欠佳。其次,商業化應用還面臨著一個成本問題,雖然DSSC成本僅占硅基電池的1/5〜1/10,但想要產業化,還需進一步降低成本。”只有解決了效率、穩定、成本等諸多問題,DSSC才能真正走上康莊大道,云斯寧教授倍感壓力,他認識到,“只有開展新原理、新結構、新方法的應用基礎研究,開發出具有自主知識產權的關鍵核心技術,跟國際上的清潔能源技術競爭,才能從容應對。”
真抓實干、各個擊破,在他看來是登頂成功的唯一途徑。作為陜西省科技計劃評審專家,他最常強調的就是“堅持”與“超越”。“如果一天工作8個小時,生活可以很輕松,但科研這個東西,只有不停地付出,幾十年如一日的堅持,才有可能取得突破。”自2012年以來,云斯寧教授開始以每年一項新突破刷新西安建筑科技大學科研成果的發表紀錄,在《Prog Polym Sci》《Energy Environ Sci》《Adv Mater》《Adv Energy Mater》《ChemSusChem》《J Mater Chem A》《Nanoscale》等國際知名期刊發表學術論文40余篇,擁有20余項專利技術,主編專著1部,參編中國、法國、印度等大學教授專著3部,之一下載量已超過99000余次。研究成果先后被陜西省人民政府、陜西省教育廳、中國建筑學會、西安建筑科技大學、《西安建大報》、精細化工國家重點實驗室等多家媒體和網站報道,相關理論、方法或結果已被國內外同行采用或作為其研究的基礎或起點。
2014年8月,由他撰寫的綜述性文章《無鉑的染料敏化太陽能電池對電極》在國際材料領域權威刊物《先進材料》發表之后,更是引起了國際同行的關注。在他看來,無鉑催化材料有獨具優勢的創新點。一方面是原材料容易獲得,價格比貴金屬鉑要便宜很多;另一方面,制備工藝比較環保,基本對環境沒污染。他舉例說,目前的這種薄膜太陽能電池,希望像塑料紙一樣印刷出來,這樣更容易實現產業化,而溶液工藝與卷對卷大面積印刷生產是非常匹配的。此外,他們開發的無鉑催化劑性能卓越,成本低廉,原材料易得,在太陽能電池、燃料電池、超級電容器、制氫、生物傳感器、有機物降解、污染控制等領域具有潛在的應用前景。
攬海聽風
榮譽、鮮花與掌聲紛至沓來,他卻波瀾不驚地說:“想要滿足國家的發展需求,我們就不能滿足于在國內拿幾個項目,而應該更關注國際上同行之間的競爭與合作。”他不僅積極參加國內外該領域的學術會議,開展科研合作,而且與日本、瑞典、美國、韓國、芬蘭、德國、巴西、西班牙等國際知名機構的科學家保持長期穩定的科研合作,并且長期擔任20余種國際主流SCI期刊的通訊評議人。為此,《西安建大報》刊發“國際合作我受益良多”一文,特別報道了他的國際科研合作。
在他的推薦下,相關研究成果刷新了國際同行對中國在新能源材料研究領域巨大潛力的認識。越來越多的國際同行也記住了這位年輕有為的中國青年科學家。在接受采訪時,他說:“由于多學科交叉研究的特點,未來開展國際科研合作的需要會更多、更頻繁。但能否建立良好的合作關系,取決于雙方彼此的信任和坦誠相待,取決于自己的層次和實力。所以,不斷地虛心學習、不恥下問,不斷提高自己、完善自己,使自己的綜合能力不斷提高,才有和更高層次優秀團隊合作的基礎和信心。”
如他所言,新能源材料研究領域,還有更多主題亟待攻克——國際合作需要主持,科研人才需要哺育……等待中國的,是要用“創新”改變的產業格局,也是要用“堅持”寫就的破局之道。
來源:科學中國人 2016年第1期
中國科技創新人物云平臺暨“互聯網+”科技創新人物開放共享平臺(簡稱:中國科技創新人物云平臺)免責聲明:
1、中國科技創新人物云平臺是:“互聯網+科技創新人物”的大型云平臺,平臺主要發揮互聯網在生產要素配置中的優化和集成作用,將互聯網與科技創新人物的創新成果深度融合于經濟社會各領域之中,提升實體經濟的創新力和生產力,形成更廣泛的以互聯網為基礎設施和實現工具的經濟發展新形態,實現融合創新,為大眾創業,萬眾創新提供智力支持,為產業智能化提供支撐,加快形成經濟發展新動能,促進國民經濟提質增效升級。
2、中國科技創新人物云平臺暨“互聯網+”科技創新人物開放共享平臺內容來源于互聯網,信息都是采用計算機手段與相關數據庫信息自動匹配提取數據生成,并不意味著贊同其觀點或證實其內容的真實性,如果發現信息存在錯誤或者偏差,歡迎隨時與我們聯系,以便進行更新完善。
3、如果您認為本詞條還有待完善,請編輯詞條。
4、如果發現中國科技創新人物云平臺提供的內容有誤或轉載稿涉及版權等問題,請及時向本站反饋,網站編輯部郵箱:kjcxac@126.com。
5、中國科技創新人物云平臺建設中盡最大努力保證數據的真實可靠,但由于一些信息難于確認不可避免產生錯誤。因此,平臺信息僅供參考,對于使用平臺信息而引起的任何爭議,平臺概不承擔任何責任。