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个人简介

教育背景 2003.2-2005.12 中国科学技术大学物理系凝聚态物理专业博士研究生 2000.9-2003.2 安徽师范大学物理化学专业硕士研究生 工作经历 2006.1-现在 河南大学物理与电子学院,讲师(2006)、副教授(2008)、教授(2015) 2016.5-2017.3 (日本)电气通信大学,理工系,特任研究员 2009.3-2010.2 (希腊)雅典科技大学,物理系,玛丽居里博士后研究员 2006.9-2007.11 成功大学,微电子研究所,博士后研究员 奖励与荣誉 2016,河南省科学技术进步奖:三等奖,排名第四 2009,安徽省科技技术奖,二等奖,排名第四

研究领域

新型光电材料与器件;新型能源转换材料的设计与合成

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1. Haibo Bi, Yang Zhang*, Influence of the additives in poly(3-hexylthiophene) hole transport layer on the performance of perovskite solar cells, Materials Letters 161 (2015) 767–769. 2. Yang Zhang, Wenqiang Liu, Furui Tan, Yuzong Gu, The essential role of the poly(3-hexylthiophene) hole transport layer in perovskite solar cells, Journal of Power Sources, 274 (2015) 1224–1230. 3. Yang Zhang, Shanshan Yuan, Wenqiang Liu, Inverted organic solar cells employing RGO/TiOx composite films as electron transport layers, Electrochimica Acta, 143 (2014) 18-22. 4. Liu Wenqiang, Yang Zhang*, Electrical characterization of TiO2/CH3NH3PbI3 heterojunction solar cells, Journal of Materials Chemistry A, 2014, 2 (26), 10244 - 10249. 5. Yang Zhang, Shanshan Yuan, Yinli Li and Weifeng Zhang, Enhanced electron collection in inverted organic solar cells using titanium oxide/reduced graphene oxide composite films as electron collecting layers, Electrochimica Acta, 117 (2014) 438–442. 6. Shanshan Yuan, Yang Zhang*, Wenqiang Liu, Weifeng Zhang, Efficient inverted organic solar cells using Zn-doped titanium oxide films as electron transport layers, Electrochimica Acta, 116 (2014) 442–446. 7. Yang Zhang, Liru Li, Shanshan Yuan, Guoqiang Li, Weifeng Zhang, Electrical properties of the interfaces in bulk heterojunction organicsolar cells investigated by electrochemical impedance spectroscopy, Electrochimica Acta, 109 (2013) 221– 225. 8. Liru Li, Yang Zhang*, Shengjun Li, Guoqiang Li, Weifeng Zhang, “Platinum nanoparticles modified indium tin oxide anodes for enhancing the efficiency and stability of organic solar cells”, Electrochimica Acta, 87, 277–282 (2013). 9. ZHANG Yang, LI Xue-Hong, PENG Cheng-Xiao, “Modification of Photoluminescence Properties of ZnO Island Films by Localized Surface Plasmons”, Chinese Physics Letters, 29 (10), 107803 (2012). 10. ZHANG Yang, LI Xue-hong, PENG Cheng-Xiao, Tunable Photoluminescence of ZnO Films with Different Surfaces by The Coating of Au Nanoparticels, Chinese Journal of Luminescence, 33 (12), 1299-1305 (2012). 11. Yang Zhang, Ching-Ting Lee, “Negative Differential Resistance in ZnO Nanowires Bridging Two Metallic Electrodes”, Nanoscale Research Letters 5, 1492–1495 (2010). 12. Yang Zhang, Ching-Ting Lee, “Site-controlled growth and field emission properties of ZnO nanorod arrays”, The Journal of Physical Chemistry C 113, 5920-5923 (2009). 13. Xuehong Li, Yang Zhang*, and Xijun Ren, “Effects of localized surface plasmons on the photoluminescence properties of Au-coated ZnO films”, Optics Express 17, 8735-8740 (2009). 14. ZHANG Yang, DIAO Da-Sheng, “Enhanced Field Emission from Vertical ZnO Nanoneedles on Micropyramids”, Chinese Physics Letters, 26, 038101 (2009). 15. Yang Zhang, Weifeng Zhang, Chengxiao Peng, “Strong ultraviolet luminescence of ZnO thin films with nanowall-network structures”, Optics Express, 16, 10696 (2008). 16. Yang Zhang, Dai-Jang Chen, Ching-Ting Lee, “Free exciton emission and dephasing in individual ZnO nanowires”, Applied Physics Letters, 91, 161911 (2007). 17. Yang Zhang, Dai-Jang Chen, and Ching-Ting Lee, “Room Temperature Negative Differential Resistance in Au/Single ZnO Wire/Au Junction Structure”, ECS Transactions, Volume 11, Issue 8, Page 7-13 (2007). 18. Yang Zhang, Weifeng Zhang, Haiwu Zheng, “Fabrication and photoluminescence properties of ZnO:Zn hollow microspheres”, Scripta Materialia, 57, 313-316 (2007). 19. Yang Zhang, Haiwu Zheng, Jianfeng Su, Bixi Lin, Zhuxi Fu, “Effects of sic buffer layer on the optical properties of ZnO films grown on Si (1 1 1) substrates”, Journal of Luminescence, 124, 252–256 (2007). 20. Yang Zhang, Bixia Lin, Zhuxi Fu, Cihui Liu, Wei Han, “Strong ultraviolet emission and rectifying behavior of nanocrystalline ZnO films”, Optical Materials, 28, 1192–1196 (2006).

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