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个人简介

受教育经历 2003/09-2009/06, 厦门大学,物理与机电工程学院物理系,凝聚态物理,博士 导师:康俊勇 教授 1999/07-2002/07, 新加坡国立大学,化学系/材料与工程研究所, 材料科学,硕士 导师:Dr. Jianhui Ye/Prof. Sam. F.Y. Li 1998/09-1999/06, 厦门大学,化学化工学院化学系,分析化学,硕士 (肆业) , 导师:朱尔一 副教授 1994/09-1998/07,厦门大学,化学化工学院化学系化学系,分析化学,学士, 导师:朱尔一 副教授 · 研究工作经历(按时间倒排序) 2014/8-至今,厦门大学,萨本栋微米纳米科学技术研究院,教授 2014/7-2015/7,美国加州大学伯克利分校,机械工程系,访问学者 2010/8-2014/7,厦门大学,萨本栋微米纳米科学技术研究院,副教授 2007/1-2008/6,美国亚利桑那州立大学,物理与天文学系,访问学者 2005/8-2010/7,厦门大学,萨本栋微机电研究中心,讲师/助理教授 2002/9-2005/7,厦门大学,萨本栋微机电研究中心,助教 2002/1-2002/5,香港科技大学,电子与机电工程系,研究助理 2001/6-2002/8,厦门大学,萨本栋微机电研究中心,教师

研究领域

主要开展了(1)低维纳米结构材料制备、表征和理论计算(第一性原理);(2)全固态薄膜(二维)微型电池以及芯片级准三维微型电池器件设计和构建;(3)燃料电池电极-催化体系;(4) 基于表面等离激元共振耦合与调控的各类金属纳米结构构建及其光谱增强(如SERS); (5)表面等离激元诱导的宽禁带半导体材料在紫外/深紫外区域光电特性的调控和增强,以及相关光电器件性能的提升; (6)钙钛矿太阳能电池等相关实验和理论研究工作。

近期论文

查看导师新发文章 (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、Jun Yin, Hui Qu, Jing Cao,Huiling Tai,Jing Li* and Nanfeng Zheng*, Vapor-assisted crystallization control toward high performance perovskite photovoltaics with over 18% efficiency in the ambient atmosphere, J. Mater. Chem. A, DOI: 10.1039/C6TA04465D, 2016. 2、Jing Cao, Xiaojing Jing (equally first contributed author), Juanzhu Yan, Chengyi Hu, Ruihao Chen, Jun Yin, Jing Li*, and Nanfeng Zheng*, Identifying the Molecular Structures of Intermediates for Optimizing the Fabrication of High-Quality Perovskite Films, J. Am. Chem. Soc., 138 (31), pp 9919–9926, 2016. 3、Chuang Yue, Yingjian Yu, Zhenguo Wu, Shibo Sun, Xu He, Juntao Li, Libo Zhao, Suntao Wu, Jing Li*, Junyong Kang, and Liwei Lin, High stability induced by the TiN/Ti interlayer in 3D Si/Ge nanorod arrays as anode in Micro Lithium Ion Battery, ACS Applied Materials & Interfaces, 8 (12), 7806–7810, 2016. 4、Jun Yin, Hui Qu, Jing Cao, Jing Li,* and Nanfeng Zheng,*, Light absorption enhancement by embedding submicron scattering TiO2 nanoparticles in perovskite solar cells, RSC Advances, 6, 24596, 2016. 5、Yingjian Yu, Chuang Yue, Xionggui Lin, Shibo Sun, Jinping Gu, Xu He, Chuanhui Zhang, Wei Lin, Donghai Lin, Xinli Liao, Binbin Xu, Suntao Wu, Mingsen Zheng,* Jing Li,* Junyong Kang, and Liwei Lin, ZIF-8 Cooperating in TiN/Ti/Si Nanorods as Efficient Anodes in Micro-Lithium-Ion-Batteries, ACS Applied Materials & Interfaces, 8, 3992-3999, 2016. 6、Jing Cao, Shiguang Mo, Xiaojing Jing, Jun Yin, Jing Li and Nanfeng Zheng*, Trace surface-clean palladium nanosheets as a conductivity enhancer in hole-transporting layers to improve the overall performances of perovskite solar cells, Nanoscale, 8, 3274-3277, 2016. 7、Wei Zhang, Jin Xu, Wei Ye, Yang Li, Zhiqiang Qi, Jiangnan Dai, Zhihao Wu, Changqing Chen*, Jun Yin, Jing Li, Hao Jiang and Yanyan Fang*, High-performance AlGaN metal–semiconductor–metal solar-blind ultraviolet photodetectors by localized surface plasmon enhancement, Appl. Phys. Lett. 106, 021112, 2015. 8、Jun Yin, Jing Cao, Xu He, Shibo Sun, Jing Li*, Nanfeng Zheng,* and Liwei Lin, Improved stability of perovskite solar cells in ambient air by controlling mesoporous layer, Journal of Materials Chemistry A, 3, 16860–16866, 2015. 9、Jun Yin, Yashu Zang, Chuang Yue, Xu He, Hongtao Yang, De-Yin Wu, Min Wu, Junyong Kang, Zhihao Wu* and Jing Li*, Multiple coupling in plasmonic metal/dielectric hollow nanocavity arrays for high sensitive detection, Nanoscale, 7, 13495-13502, 2015. 10、Cao, Jing; Liu, Yu-Min; Jing, Xiaojing; Yin, Jun; Li, Jing; Xu, Bin; Tan, Yuan-Zhi; Zheng, Nanfeng, Well-Defined Thiolated Nanographene as Hole-Transporting Material for Efficient and Stable Perovskite Solar Cells,Journal of the American Chemical Society, 137, 10914-10917, 2015. 11、Jing Cao, Jun Yin, Shangfu Yuan, Yun Zhao, Jing Li, and Nanfeng Zheng*, Thoils as interfacial modifiers to enhance the performance and stability of perovskite solar cells, Nanoscale, 7, 9443-9447,2015. 12、Chuang Yue, Yingjian Yu, Shibo Sun, Xu He, Binbin Chen, Wei Lin, Binbin Xu, Mingsen Zheng, Suntao Wu, Jing Li*, Junyong Kang, and Liwei Lin, High performance 3D Si/Ge Nanorods Array anode buffered by TiN/Ti interlayer for sodium ion batteries, Advanced Functional Materials, 25, 1386–1392, 2015. (featured article in frontispiece) 13、Yuan Zhong, Chuang Yue, Binbin Chen, Shibo Sun, Mingsen Zheng, Libo Zhao, Suntao Wu, Jing Li*, Junyong Kang, Liwei Lin, Synthetic preparation of novel 3D Si/TiO2-Ti2O3 composite nanorod arrays as anode in lithium ion batteries, RSC Advances, 5, 37399–37404, 2015. 14、Shibo Sun, Chuang Yue, Jun Yin, Binbin Chen, Mingsen Zheng, Suntao Wu, Jing Li*, Junyong Kang and Liwei Lin. An air-stable sandwiched Li3PO4/Ge solid electrolyte for thin film lithium ion batteries, Science Letter, 4: 174, 2015. 15、Yashu Zang, Jun Yin, Xu He, Chuang Yue, Zhiming Wu, Jing Li,* and Junyong Kang*, Plasmonic enhanced self-cleaning activity on asymmetric Ag/ZnO SERS substrates under ultraviolet and visible irradiation, J. Mater. Chem. A, 2 (21), 7747 – 7753, 2014. (featured article in front cover page) 16、Yingjian Yu, Chuang Yue, Shibo Sun, Wei Lin, Hang Su, Binbin Xu, Juntao Li, Suntao Wu, Jing Li*, and Junyong Kang, The Effects of Different Core-Shell Structures on Electrochemical Performances of Si-Ge Nanorod Arrays as Anodes for Micro-Lithium Ion Batteries, ACS Applied Materials & Interfaces, 6(8), 5884-5890, 2014. 17、Jun Yin , Yang Li , Shengchang Chen , Jing Li , * Junyong Kang , Wei Li , Peng Jin , Yonghai Chen , Zhihao Wu , * Jiangnan Dai , Yanyan Fang , and Changqing Chen, Surface Plasmon enhanced hot exciton emission in deep UV emitting AlGaN multiple quantum wells, Advanced Optical Material, 2(5), 451–458, 2014. (featured article in frontispiece) 18、Jun Yin, Yashu Zang, Binbin Xu, Shuping Li, Junyong Kang, Yanyan Fang, Zhihao Wu* and Jing Li*, Multipole plasmon resonances in self-assembled metal hollow nanosphere arrays, Nanoscale , 6(8), 3934-3940, 2014. 19、Chuang Yue, Yingjian Yu, ZhenGuo Wu, Xu He, JianYuan Wang, JunTao Li, Cheng Li, Suntao Wu, Jing Li*, and Junyong Kang, Enhanced reversible Lithium storage in Germanium nano-island coated 3D hexagonal bottle-like Si nanorod arrays , Nanoscale, 6 (3), 1817 – 1822, 2014. 20、Chuang Yue, Jing Li* and Junyong Kang, Fabrication of the hexagonal Si Nanorod arrays using the template of Polystyrene nanosphere in monolayer dispersion, Journal of Nanoengineering and Nanosystems, 228(1),40-45, 2014.

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