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雷红伟
发布时间:2017-10-25

  

雷红伟,男,博士,1991年出生中国共产党党员,华中农业大学理学院物理系讲师,华中农业大学狮山硕彦计划青年英才。

联系电话:15527930871         联系邮箱: leihw@mail.hzau.edu.cn

【教育工作背景】

2008.9-2012.6,武汉大学,物理科学与技术学院,工学学士

2012.9-2017.6,武汉大学,物理科学与技术学院,工学博士,导师:方国家教授

2016.8-2017.2,中科院化学研究所,有机固体实验室联培,导师:张志国教授,李永舫院士

2017.7至今, 华中农业大学,理学院,讲师

2019.102021.8,瑞典 林雪平大学,博士后,导师:高峰教授

【教书育人情况】

主讲《大学物理》及《大学物理实验》课程,参与建设湖北省线上一流课程、湖北省虚拟仿真实验一流课程2门,主持华中农业大学虚拟仿真实验教学项目1项,参与湖北省高等学校教学研究项目3项。担任201820202021级本科生导师,获得2018年华中农业大学理学院公益育人突出贡献奖,2019年华中农业大学理学院优秀共产党员称号。

科学研究情况】

主要从事新型半导体能源材料与光电器件相关的研究工作,包括铅基、无铅钙钛矿材料及钙钛矿光伏、发光器件研究。主持国家自然科学基金青年科学基金项目1项(26万,在研),湖北省自然科学基金1项(5万,已结题)和中央高校基本科研业务费项目1项(15万,已结题)。发表SCI论文>40篇,引用次数>4200,其中以第一/通讯/共一作者身份在Advanced Functional Materials, Solar RRL, Nanoscale, Advanced Materials Interfaces, Solar Energy Materials & Solar Cells等期刊发表论文13篇,1篇文章当选为内封面文章,2篇文章当选为热点文章。湖北省物理学会会员、湖北省激光技术专业委员会会员,担任Advanced Functional Materials, ACS Applied Energy Materials, New Journal of ChemistrySCI期刊审稿人。

【论文发表情况

[1] Hongwei Lei*, David Hardy, Feng Gao*. Lead-Free Double Perovskite Cs2AgBiBr6: Fundamentals, Applications, and Perspectives. Advanced Functional Materials, (2021), doi: 10.1002/adfm.202105898.

[2] Jorim Okoth Obila, Hongwei Lei*, Elijah Omolo Ayieta, Alex Awuor Ogacho, Bernard O. Aduda, Feng Wang. Improving the efficiency and stability of tin-based perovskite solar cells using anilinium hypophosphite additive. New Journal of Chemistry, (2021), 4518: 8092-8100.

[3] Jorim Okoth Obila, Hongwei Lei*, Elijah Omollo Ayieta, Alex Awuor Ogacho, Bernard O. Aduda, Feng Wang. Optoelectronic property refinement of FASnI3 films for photovoltaic application. Materials Letters, (2021), 300: 130099.

[4] Hongwei Lei#, Pei Dai#, Xinran Wang, Zongwei Pan, Yaxiong Guo, Huan Shen, Jianjun Chen, Jing Xie, Bing Zhang, Song Zhang*, Zuojun Tan*. In Situ Defect Passivation with Silica Oligomer for Enhanced Performance and Stability of Perovskite Solar Cells. Advanced Materials Interfaces, (2020), 73: 1901716. (封面文章)

[5] Yaxiong Guo#, Hongwei Lei#, Changlei Wang, Junjie Ma, Cong Chen, Xiaolu Zheng, Guang Yang, Liangbin Xiong, Zuojun Tan*. Reconfiguration of Interfacial and Bulk Energy Band Structure for High-Performance Organic and Thermal-Stability Enhanced Perovskite Solar Cells. Solar RRL, (2020), 44: 1900482.

[6] Hongwei Lei, Tinghao Lin, Xinran Wang, Pei Dai, Yaxiong Guo, Yijun Gao, Dejia Hou*, Jianjun Chen, Zuojun Tan*. Copper doping of Sb2S3: fabrication, properties, and photovoltaic application. Journal of Materials Science: Materials in Electronics, (2019), 3024: 21106-21116.

[7] Hongwei Lei, Jianjun Chen*, Zuojun Tan*, Guojia Fang*. Review of Recent Progress in Antimony Chalcogenide-Based Solar Cells: Materials and Devices. Solar RRL, (2019), 36: 1900026. (热点文章)

[8] Hongwei Lei#, Tinghao Lin#, Xinran Wang, Shu Zhang, Qiluan Cheng, Xuejing Chen, Zuojun Tan, Jianjun Chen*. A novel in situ hydrothermal preparation route for Sb2S3 and its solar cell application. Materials Letters, (2018), 233: 90-93.

[9] Hongwei Lei#, Xiaofeng Chen#, Lingwei Xue#, Linhao Sun, Jianjun Chen, Zuojun Tan, Zhi-Guo Zhang*, Yongfang Li, Guojia Fang*. A solution-processed pillar[5]arene-based small molecule cathode buffer layer for efficient planar perovskite solar cells. Nanoscale, (2018), 1017: 8088-8098.

[10] Hongwei Lei#, Guang Yang#, Xiaolu Zheng#, Zhi‐Guo Zhang, Cong Chen, Junjie Ma, Yaxiong Guo, Zhiliang Chen, Pingli Qin, Yongfang Li, Guojia Fang*. Incorporation of High‐Mobility and Room‐Temperature‐Deposited CuxS as a Hole Transport Layer for Efficient and Stable Organo‐Lead Halide Perovskite Solar Cells. Solar RRL, (2017), 13-4. (热点文章)

[11] Hongwei Lei, Guang Yang, Yaxiong Guo, Liangbin Xiong, Pingli Qin, Xin Dai, Xiaolu Zheng, Weijun Ke, Hong Tao, Zhao Chen, Borui Li, Guojia Fang*. Efficient planar Sb2S3 solar cells using a low-temperature solution-processed tin oxide electron conductor. Physical Chemistry Chemical Physics, (2016), 1824: 16436-16443.

[12] Hongwei Lei, Pingli Qin, Weijun Ke, Yaxiong Guo, Xin Dai, Zhao Chen, Haoning Wang, Borui Li, Qiao Zheng, Guojia Fang*. Performance enhancement of polymer solar cells with high work function CuS modified ITO as anodes. Organic Electronics, (2015), 22: 173-179.

[13] Hongwei Lei, Guojia Fang*, Fei Cheng, Weijun Ke, Pingli Qin, Zengcai Song, Qiao Zheng, Xi Fan, Huihui Huang, Xingzhong Zhao. Enhanced efficiency in organic solar cells via in situ fabricated p-type copper sulfide as the hole transporting layer. Solar Energy Materials and Solar Cells, (2014), 128: 77-84.

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