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尹君
2023-05-13 22:11
  • 尹君
  • 尹君 - 副教授-厦门大学-萨本栋微米纳米科学技术研究院-个人资料

近期热点

资料介绍

个人简历


教育经历: 2009.9‐2014.6 华中科技大学,硕博连读,光电信息工程专业,光学与电子信息学院; 2005.8‐2009.6 哈尔滨工程大学,本科,光信息科学与技术专业,理学院; 科研工作经历: 2014/09 ‐ 2016/09,厦门大学,萨本栋微米纳米科学技术研究院,研究型助理教授/师资博士后(厦门大学化学科研流动站)。 2016/09 - 至今,厦门大学,萨本栋微米纳米科学技术研究院,副教授

研究领域


研究课题主要集中在能源光电子材料与相关器件领域,涉及新型高效钙钛矿型太阳能电池的研究与制备,基于高特异性微纳米结构的表面等离激元光学调控特性研究,以及上述光场操控体系在相关光电子器件中 的应用等。

近期论文


1.Jun Yin, Hui Qu, Jing Cao, Huiling Tai, Jing Li*, Nanfeng Zheng*, Vapor-assisted crystallization control toward high performance perovskite photovoltaics with over 18% efficiency in the ambient atmosphere. J. Mater. Chem. A, 2016, DOI: 10.1039/C6TA04465D. (SCI, JCR一区) 2.Jun Yin, Hui Qu, Jing Li*, Nanfeng Zheng* et al. Light absorption enhancement by embedding submicron scattering TiO2 nanoparticles in perovskite solar cells. RSC Adv., 6, 24596, 2016. (SCI, JCR三区) 3.Jun Yin, Jing Cao, Jing Li*, Nanfeng Zheng*, Liwei Lin et al. Improved stability of perovskite solar cells in ambient air by controlling the mesoporous layer. J. Mater. Chem. A, 3, 16860, 2015. (SCI, JCR一区) 4.Jun Yin, Yashu Zang, Deyin Wu, Junyong Kang, Jing Li* et al. Multiple coupling in plasmonic metal/dielectric hollow nanocavity arrays for highly sensitive detection. Nanoscale, 7, 13495, 2015. (SCI, JCR一区) 5.Jun. Yin, Jing Li,* Z. H. Wu*, Yanyan Fang, Changqing Chen et al, Surface Plasmon enhanced hot exciton emission in AlGaN based deep UV LED. Adv. Optical Mater., 2, 451, 2014. (SCI, JCR二区) 6.Jun Yin, Yashu Zang, Zhihao Wu* and Jing Li*, Multipole plasmon resonances in self-assembled metal hollow nanosphere arrays, Nanoscale, 6, 3934-3940, 2014. (SCI, JCR一区) 7.Jun Yin, Yashu Zang, Jing Li,* Zhihao Wu* et al.; Self-assembled hollow nanosphere arrays used as low Q whispering gallery mode resonators on thin film solar cells for light trapping, Phys. Chem. Chem. Phys. 15, 16874, 2013. (SCI, JCR二区) 8.Jun Yin, Chuang Yue, Yashu Zang, Zhihao Wu*, Jing Li*, et al.; Effect of the Surface-Plasmon-Exciton coupling and charge transfer process on the photoluminescence of metal-semiconductor nanostructures, Nanoscale, 5, 4436, 2013. (SCI, JCR一区) 9.Jun Yin, Yashu Zang, Jing Li*, and Zhihao wu*, et al. Ag nanoparticle/ZnO hollow nanosphere arrays: large scale synthesis and surface plasmon resonance effect induced Raman scattering enhancement, J. Mater. Chem., 22, 7902, 2012. (SCI, JCR一区) 10. Jun Yin, Zhihao Wu*, Changqiang Chen et al. The effects of V/III ratio on nonpolar a-plane GaN films grown on r plane sapphire by MOCVD, J. Phys.: Conf. Ser. 276, 012199, 2011. (EI会议论文) 11. Jing Cao, Jun Yin, Shangfu Yuan, Yun Zhao, Jing Li, Nanfeng Zheng*. Thiols as interfacial modifiers to enhance the performance and stability of perovskite solar cells. Nanoscale, 7, 9443-9447, 2015. 12. Jing Cao, Yumin Liu, Xiaojing Jing, Jun Yin, Jing Li, Bin Xu, Yuanzhi Tan, Nanfeng Zheng*. Well-Defined Thiolated Nanographene as Hole-Transporting Material for Efficient and Stable Perovskite Solar Cells. J. Am. Chem. Soc., 137, 10914, 2015. 13. Jing Cao, Shiguang Mo, Xiaojing Jing, Jun Yin, Jing Li, 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, 2016. 14. Yashu Zang, Jun Yin, Jing Li*, Junyong Kang* et al. Plasmonic-enhanced self-cleaning activity on asymmetric Ag/ZnO surface-enhanced Raman scattering substrates under UV and visible light irradiation. J. Mater. Chem. A, 2, 7747, 2014. 15. Yashu Zang, Xu He, Jun Yin, Jing Li*, Junyong Kang*. Band edge emission enhancement by the quadrupole surface plasmon-exciton coupling using direct-contact Ag/ZnO nanospheres, Nanoscale, 5, 574, 2013. 16. Chuang Yue, Yingjian Yu, Jun Yin, Jing Li* et al. Fabrication of 3D hexagonal bottle-like Si/SnO2 core/shell nanorod arrays as anode material in on chip micro-Lithium-ion-batteries, J. Mater. Chem. A, 1, 7896, 2013. 17. Xu He, Chuang Yue, Yashu Zang, Jun Yin, Jing Li* et al. Multi-hot spot configuration on urchin-like Ag nanoparticle /ZnO hollow nanosphere arrays for highly sensitive SERS. J. Mater. Chem. A, 1, 15010, 2013.

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