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教师名录

郑众
教授

办公地点:理化楼301

办公电话:13810962167

电子邮件:zhongzheng@ustb.edu.cn

本科课程:《基础化学II》

研究生课程:《先进光伏技术》

科研方向:

社会职务:

简    历

科研工作经历

2022-至今: 教授, 化学与生物工程学院, 北京科技大学

2019-2022: 中国科学院特别研究助理, 高分子物理与化学实验室, 中国科学院化学研究所

2017-2019: 副研究员,纳米系统与多级次制造实验室, 国家纳米科学中心

2016-2017: 博士后, 化学部,东京大学

教育经历

2013-2016 理学博士,高分子物理与化学实验室, 中国科学院化学研究所

2010-2013 工学硕士,材料科学与工程学院,北京化工大学

2006-2010 工学学士,材料科学与工程学院,北京化工大学

科研业绩

主持国家自然科学基金面上项目、青年项目,北京市科委面上项目,中国科学院特别研究助理资助项目,北京分子科学国家研究中心Junior Research Fellow,中国博士后科学基金面上资助。 6次获得经中国计量科学研究院认证的有机光伏领域同期最高能量转化效率。

获得奖励/专利

1. 化学所青年科学奖特别优秀奖

2.化学研究所所长奖、博士研究生国家奖学金等奖学金

招生计划

每年2-3名硕士、1名博士

代表性论文著作

[1] Hao Li, Zhong Zheng*, Shiwei Yang, Tao Wang, Yi Yang, Yanjie Tang, Shaoqing Zhang and Jianhui Hou*. Anti-Fatigue Tandem Organic Photovoltaics for Indoor Illumination. Advanced Materials 2024, 2311476

[2] Yanjie Tang, Jiaming Fu, Hao Li, Du Hyeon Ryu, Won Suk Shin, Jianqi Zhang, Yi Yang, Yiming Yang, Deyuan Li, Zhong Zheng*, Shaoqing Zhang and Jianhui Hou*.    Manipulating Nanowires in Interconnecting Layer for Efficient Tandem Organic Photovoltaics. Chin. J. Chem. 2024, 42, 377-383.

[3] Yafei Wang, Zhong Zheng*, Jianqiu Wang, Pengqing Bi, Zhihao Chen, Junzhen Ren, Cunbin An, Shaoqing Zhang and Jianhui Hou*. Organic laser power converter for efficient wireless micro power transfer. Nature Communications 2023, 14, 5511.

[4] Zhong Zheng*, Jianqiu Wang, Junzhen Ren, Shijie Wang, Yafei Wang, Wei Ma, Lei Zheng, Hao Li, Yanjie Tang, Shaoqing Zhang, Jianhui Hou*. Rational control of meniscus-guided coating for organic photovoltaics. Science Advances 2023, 9, eadg9021.

[5] Jianqiu Wang, Zhong Zheng* Pengqing Bi, Zhihao Chen, Yafei Wang, Xiaoyu Liu, Shaoqing Zhang, Xiaotao Hao, Maojie Zhang,* Yongfang Li and Jianhui Hou*. Tandem organic solar cells with 20.6% efficiency enabled by reduced voltage losses. National Science Review, 2023, nwad085.

[6] Yafei Wang, Zhong Zheng*, Jianqiu Wang, Xiaoyu Liu, Junzhen Ren, Cunbin An, Shaoqing Zhang, Jianhui Hou*, New Method for Preparing ZnO Layer for Efficient and Stable Organic Solar Cells, Advanced Materials, 2023, 2208305.

[7] Zhong Zheng, Jianqiu Wang, Pengqing Bi, Junzhen Ren, Yafei Wang, Yi Yang, Xiaoyu Liu, Shaoqing Zhang, Jianhui Hou*, Tandem Organic Solar Cell with 20.2% Efficiency, Joule 2022, 6, 171.

[8] Jianqiu Wang, Zhong Zheng*, Yunfei Zu, Yafei Wang, Xiaoyu Liu, Shaoqing Zhang, Maojie Zhang*, Jianhui Hou*, A Tandem Organic Photovoltaic Cell with 19.6% Efficiency Enabled by Light Distribution Control, Advanced Materials 2021, 2102787.

[9] Xiaoyu Liu, Zhong Zheng*, Jianqiu Wang, Yafei Wang, Bowei Xu, Shaoqing Zhang, and Jianhui Hou*, Fluidic Manipulating of Printable Zinc Oxide for Flexible Organic Solar Cells, Advanced Materials, 2022, 34, 2106453.

[10] Zhong Zheng, Huifeng Yao, Long Ye, Ye Xu, Shaoqing Zhang*, Jianhui Hou*, PBDB-T and its derivatives: a family of polymer donors enables over 17% efficiency in organic photovoltaics, Materials Today 2020, 35, 115.

[11] Xiaoyu Liu, Zhong Zheng*, Ye Xu, Yafei Wang, Jianqiu Wang, Shaoqing Zhang* and Jianhui Hou*, Quantifying Alkyl Pendants of Acceptors Induced Voc Loss in Organic Solar Cells, Journal of Materials Chemistry C 2020,8, 12568.

[12] Wenxuan Wang, Wang Jianqiu, Zhong Zheng* and Jianhui Hou*, Research Progress of Tandem Organic Solar Cells, Acta Chimica Sinica 2020, 78, 382.

[13] Jianqiu Wang, Zhong Zheng*, Dongyang Zhang, Jianqi Zhang, Jiyu Zhou, Jingchong Liu, Shenkun Xie, Yong Zhao, Yuan Zhang*, Zhixiang Wei, Jianhui Hou, Zhiyong Tang, Huiqiong Zhou*, Regulating Bulk-Heterojunction Molecular Orientations through Surface Free Energy Control of Hole-Transporting Layers for High-Performance Organic Solar Cells, Advanced Materials 2019, 31, 1806921.

[14] Zhong Zheng*, Shaoqing Zhang, Jianqiu Wang, Jianqi Zhang, Dongyang Zhang, Yuan Zhang*, Zhixiang Wei, Zhiyong Tang, Jianhui Hou, Huiqiong Zhou*, Exquisite modulation of zno nanoparticle electron transporting layer for high-performance fullerenefree organic solar cell with inverted structure, Journal of Materials Chemistry A 2019, 7, 3570.

[15] Anbu Kumaresan, Shuo Yang, Kun Zhao, Nafees Ahmad, Jiyu Zhou, Zhong Zheng*, Yuan Zhang, Yan Gao*, Huiqiong Zhou* and Zhiyong Tang, Facile development of CoAl-LDHs/RGO nanocomposites as photocatalysts for efficient hydrogen generation from water splitting under visible-light irradiation, Inorganic Chemistry Frontiers 2019, 6, 1753.

[16] Zhong Zheng, Huiqiong Zhou*, The effect of one- or two-dimensional conjugated benzodithiophene in polymeric donors on the device performance of non-fullerene organic solar cells Dyes and Pigments 2019, 163, 221

[17] Zhong Zheng, Qu Hu, Shaoqing Zhang, Dongyang Zhang, Jianqiu Wang, Shenkun Xie, Rong Wang, Yunpeng Qin, Wanning Li, Ling Hong, Ningning Liang, Feng Liu*, Yuan Zhang*, Zhixiang Wei, Zhiyong Tang, Thomas Russell, Jianhui Hou*, Huiqiong Zhou*, A highly efficient non-fullerene organic solar cell with a fill factor over 0.80 enabled by a fine-tuned hole-transporting layer, Advanced Materials 2018, 30, 1801801.

[18] Zhong Zheng, Rong Wang, Huifeng Yao, Shenkun Xie, Yuan Zhang*, Jianhui Hou*, Huiqiong Zhou*, Zhiyong Tang, Polyamino acid interlayer facilitates electron extraction in narrow band gap fullerene-free organic solar cells with an outstanding short-circuit current, Nano Energy 2018, 50, 169.

[19] Zhong Zheng, Omar Awartani, Bhoj Gautam, Ddelong Liu, Yunpeng Qin, Wanning Li, Alexander Bataller, Kenan Gundogdu*, Harald Ade*, Jianhui Hou*, Efficient charge transfer and fine-tuned energy level alignment in a thf-processed fullerene-free organic solar cell with 11.3% efficiency, Advanced Materials 2017, 29, 1604241.

[20] Zhong Zheng, Shaoqing Zhang, Jianqi Zhang, Yunpeng Qin, Wanning Li, Runnan Yu, Zhixiang Wei, and Jianhui Hou*, Over 11% efficiency in tandem polymer solar cells featured by a low-band-gap polymer with fine-tuned properties, Advanced Materials 2016, 28, 5133.

[21] Zhong Zheng, Shaoqing Zhang, Maojie Zhang, Kang Zhao, Long Ye, Yu Chen, Bei Yang, and Jianhui Hou*, Highly efficient tandem polymer solar cells with a photovoltaic response in the visible light range, Advanced Materials 2015, 27, 1189.

研究生培养情况