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陳永華

(南京工業大學先進材料研究院教授)

鎖定
陳永華,就職於南京工業大學先進材料研究院,教授、博士生導師,院長。入選第十四批江蘇省六大人才高峯。
陳永華長期從事鈣鈦礦光伏材料與器件的研究工作,重點圍繞其高效性和穩定性,針對“分子結構-薄膜工藝-光伏性能”的內在關係這一關鍵科學問題,開展高效穩定光伏器件的研究工作。
近年來,共發表SCI論文180餘篇,他引9000餘次,h因子50。近5年,以通訊作者發表論文80餘篇,包括Nature、Science、Nature Energy、Nature Photonics、Nature Review Materials、Chemical Society Review、Joule、Chem、Angewandte Chemie、Advanced Materials等,申請/授權中國專利20項、美國專利2項。受邀撰寫一部英文專著“Organic Semiconductor Heterojunctions and its Application in Organic Light-Emitting Diodes”和一部英文專著二個章節“White OLED Materials”、“Alternating Current Driven Organic Light-Emitting Devices”和“Lead-free Halide Perovskites”。成果入選2021年度“中國高等學校十大科技進展”和2021年度“中國半導體十大研究進展”。擔任Journal of Semiconductors青年編委等。主持國家自然科學基金青年項目、面上項目,江蘇特聘教授項目、江蘇省傑青項目、江蘇省雙碳項目、江蘇省自然科學基金青年項目,江蘇省雙創團隊核心成員,參與國家重點基礎研究發展計劃項目和國家自然科學基金重大研究計劃集成項目。 [1] 
中文名
陳永華
外文名
CHEN Yong-Hua
國    籍
中國
畢業院校
內蒙古大學
職    稱
南京工業大學先進材料研究院教授

目錄

陳永華個人簡歷

2015年12月-至今,南京工業大學,先進材料研究院,教授
2013年-2015年,美國凱斯西儲大學,高分子科學與工程系,博士後
2011年-2013年,美國維克森林大學,物理系,博士後
2006年-2011年,中科院長春應化所,高分子物理與化學國家重點實驗室,博士
2002年-2006年,內蒙古大學,化學化工學院,學士 [1] 

陳永華研究方向

柔性大面積有機及鈣鈦礦光電轉換材料及器件
有機光電子器件物理 [1] 

陳永華代表文章

陳永華2018

1. Z. Wang?, J. Qiu?, X. Wang, Z. Zhang, Y. Chen,* X. Huang,* Wei Huang,* “Two-dimensional light-emitting materials: preparation, properties and applications” Chem. Soc. Rev. 47 (2018) 6128-6174.
2. J. Xu, Y. Cui, G. M. Smith, P. Li, C. Dun, L. Shao, Y. Guo, H. Wang, Y. Chen, and D. L. Carroll* “Tailoring spin mixtures by ion-enhanced Maxwell magnetic coupling in colortunable organic electroluminescent devices” Light Sci Appl, 7 (2018) 46.
3. L. Bai, Z. Wang, Y. Han, B. Liu, M. Yu, H. Zhang, J. Lin,* Y. Xia, C. Yin, L. Xie, Y. Chen,* Z. Lin, J. Wang, W. Huang* “Diarylfluorene-based Nano-molecules as Dopant-Free Hole-transporting Materials without Post-treatment Process for Flexible p-i-n Tpye Perovskite Solar Cells” Nano Energy 46 (2018) 241-248.
4. H. Zhang, M. Hou, Y. Xia,* Q. Wei, Z. Wang, Y. Cheng, Y. Chen,*and W. Huang,* “Synergistic effect of anions and cations in additives for highly efficient and stable perovskite solar cells” J. Mater. Chem A. 6 (2018) 9264 - 9270.
5. M. Hou, H. Zhang, Z. Wang, Y. Xia,* J. Qiu, Y. Zheng, Y. Chen,* and W. Huang, “Enhancing Efficiency and Stability of Perovskite Solar Cells via a Self-Assembled Dopamine Interfacial Layer” ACS Appl. Mater. Interfaces 2018, DOI: 10.1021/acsami.8b10332.
6. L. Chao, Z. Wang, Y. Xia, Y. Chen,* and W. Huang,* “Recent Progress on Low Dimensional Perovskite Solar Cells” J. Energy. Chem. 27 (2018) 1091-1100.
7. Z. Wang, Y. Xia, L. Chao, Y. Pan, M. Li, R. Li, B. Du, Y. Chen,* and W. Huang,* “Solution processed nano-ZnMgO interfacial layer for highly efficient inverted perovskite solar cells” J. Energy. Chem. 2018, DOI: 10.1016/j.jechem.2018.03.001
8. J. Guo, Z. Shi, Y. Xia, Q. Wei, Y. Chen,* G. Xing,* and W. Huang,* “Super Air Stable Quasi-2D Organic-Inorganic Hybrid Perovskites for Visible Light-Emitting Diodes” Opt. Express 26 (2018) A66-A74.
9. H. Chen, Y. Xia, Y. Chen,* and W. Huang, “Low-dimensional Perovskites: a Novel Candidate Light-harvesting Material for Solar Cells that Combines High Efficiency and Stability” Mater. Rev. 32 (2018) 1-11. [1] 

陳永華2017

1. Y. Pan, Y. Xia,* H. Zhang, J. Qiu, Y. Zheng, Y. Chen,* and W. Huang,* “Recent Advances in Alternating Current (AC)-Driven Organic Light-Emitting Devices” Adv. Mater. 2017, In Press.
2. Z. Shi, J. Guo, Y. Chen,* Q. Li, Y. Pan, H. Zhang, Y. Xia,* and W. Huang,* “Lead-free Organic-inorganic Hybrid Perovskites for Photovoltaic Applications: Recent Advances and Perspectives” Adv. Mater. 29 (2017) 1605005.
3. Z. Wang, Z. Shi, T. Li, Y. Chen,* and W. Huang,* “Stability of Perovskite Solar Cells: A Prospective on Substitution of A-cation and X-anion” Angew. Chem. Int. Ed. 56 (2017) 1190-1212.
4. Y. Xia, Y. Pan, H. Zhang, J. Qiu, Y. Zheng, Y. Chen,* and W. Huang,* “Graphene Oxide by UV-Ozone Treatment as Efficient Hole Extraction Layer for Highly Efficient and Stable Polymer Solar Cells” ACS Appl. Mater. & Interfaces 2017, In Press.
5. Y. Xia, C. Ran, Y. Chen,* Q. Li, N. Jiang, C. Li, Y. Pan, T. Li, J. Wang,* and W. Huang* “Management of Perovskite Intermediates for Highly Efficient Inverted Planar Heterojunction Perovskite Solar Cells” J. Mater. Chem. A 5 (2017) 3193-3202.
6. T. Li, Y. Pan, Z. Wang, Y. Xia,* Y. Chen,* and W. Huang,* “Additive Engineering for Highly Efficient Organic-Inorganic Halide Perovskite Solar Cells: Recent Advances and Perspectives” J. Mater. Chem. A 5 (2017) 12602-12652.
7. J. Hu, C. Zhao, T. Zhang, X. Zhang, X. Cao, Q. Wu, Y. Chen,* D. Zhang, Y. Tao,* and W. Huang, “Isomeric N-Linked Benzoimidazole Containing New Electron Acceptors for Exciplex Forming Hosts in Highly Efficient Blue Phosphorescent OLEDs” Adv. Optical Mater. 5 (2017) 1700036 [1] 

陳永華2016

8. Y. Chen, D. Ma, H. Sun, J. Chen, Q. Guo, Q. Wang, and Y. Zhao, "Organic Semiconductor Heterojunctions: Electrode Independent Charge Injectors for High-Performance Organic Light-Emitting Diodes", Light Sci. Appl. 5 (2016) e16042. [1] 

陳永華2015

9. J. Xu,# Y. Chen,# and L. Dai, “Efficiently Photo-Charging Lithium Ion Battery by Perovskite Solar Cell”, Nat. Commun. 6 (2015) 8103. (共同一作)
10. Y. Chen, T. Chen, and L. Dai, “Layer-by-Layer Growth of CH3NH3PbI3-xClx for Highly Efficient Planar-Heterojunction Perovskite Solar Cells”, Adv. Mater. 27 (2015) 1053-1059. [1] 

陳永華2014

11. Y. Chen, Y. Xia, G. M. Smith, and D. L. Carroll, “Frequency-Dependent, Alternating Current-Driven, Field-Induced Polymer Electroluminescent Devices with High Power Efficiency”, Adv. Mater. 26 (2014) 8133-8140. (封面文章)
12. Y. Chen, W-C. Lin, J. Liu, and L. Dai, “Graphene Oxide-Based Carbon Interconnecting Layer for Polymer Tandem Solar Cells”, Nano Lett. 14 (2014) 1467-1471.
13. Y. Chen, Y. Xia, G. M. Smith, H. Sun, D. Yang, D. Ma, Y. Li, W. Huang, and D. L. Carroll, “Solution-Processable Hole-Generation Layer and Electron-Transporting Layer: Towards High-Performance, Alternating-Current-Driven, Field-Induced Polymer Electroluminescent Devices”, Adv. Funct. Mater. 24 (2014) 2677-2688.
14. Y. Chen, Y. Xia, H. Sun, G. M. Smith, D. Yang, D. Ma, and D. L. Carroll, “Solution-Processed Highly Efficient Alternating Current-Driven Field-Induced Polymer Electroluminescent Devices Employing High-k Relaxor Ferroelectric Polymer Dielectric”, Adv. Funct. Mater. 24 (2014) 1501-1508. (插頁文章) [1] 
參考資料