个人简介
杨政,1989年生,男,河北大学物理科学与技术学院,副教授,博士生导师(光学工程方向)。本科毕业于清华大学材料科学与工程系,2019年于中国科学院北京纳米能源与系统研究所获纳米科学与技术博士学位,2019年12月被引进至河北大学物理科学与技术学院从事教学与科研工作。主要致力于金属卤化物钙钛矿材料和硫化化合物材料的可控制备和光电子器件研制(主要是光电探测器)等工作。近五年来,在Advanced Materials、Advanced Functional Materials、ACS nano、Nano letters、Nano Energy、Materials Today和Small等高水平期刊发表SCI收录论文23篇,其中第一作者和通讯作者论文12篇。
研究方向
1、金属卤化物钙钛矿单晶和薄膜、硫族化合物纳米材料的可控制备
2、基于光-热-电耦合效应(热释电或光热电)的光电探测器研制
3、钙钛矿的电极化性质(铁电、压电、热释电、挠曲电)研究。
学术成果
科研项目:
1. 2024年生命科学与绿色发展研究院学科建设项目,30万,2024-01-2024.12,主持
2. 河北大学高层次引进人才启动项目,50万,2019.03-2023.04,主持;
3. 国家自然科学基金青年项目:基于铯基二维钙钛矿的波长可调谐激光器研究,24万,2021/01-2023/12,主持;
4. 河北省自然科学基金优秀青年项目:基于二维钙钛矿铁电薄膜阵列的波长识别热释电探测器研究,20万,2021.07-2023.12,主持;
5. 河北省教育厅青年拔尖人才项目:铁电热释电挠曲电耦合增强的量子点锚固钙钛矿宽谱光探测器研究,10万,2022.04-2024.12,主持。
主要发表论文:
1. Linjuan Guo#, Yaqian Qi#, Zihao Wu, Xiaoran Yang, Guoying Yan, Ridong Cong, Lei Zhao, Wei Zhang, Shufang Wang*, Caofeng Pan*, and Zheng Yang*, A Self-Powered UV Photodetector with Ultrahigh A Self-Powered UV Photodetector With Ultrahigh Responsivity Based on 2D Perovskite Ferroelectric Films With Mixed Spacer Cations. Adv. Mater. 2023, 31, 2301705. SCI,双一区top,IF=29.4
2. Linjuan Guo#, Huan Wang#, Ziqing Xu#, Ridong Cong, Lei Zhao, Suheng Zhang, Kai Zhang, Linjie Gao, Shufang Wang*, Caofeng Pan*, Zheng Yang*, Interfacial Pyro-Phototronic Effect: A Universal Approach for Enhancement of Self-Powered Photodetection Based on Perovskites with Centrosymmetry. Adv. Funct. Mater. 2023, 33, 2306526. SCI,双一区top,IF=19.0
3. Linjuan Guo#, Xiu Liu#, Ridong Cong, Linjie Gao, Kai Zhang, Lei Zhao, Xinzhan Wang, Rui-Ning Wang, Caofeng Pan*, Zheng Yang*, Patterned 2D Ferroelectric Perovskite Single-Crystal Arrays., Patterned 2D Ferroelectric Perovskite Single-Crystal Arrays for Self-Powered UV Photodetector Boosted by Combining Ferro-Pyro-Phototronic and Piezo-Phototronic Effects. Nano Lett. 2022, 22, 8241-8249. SCI,双一区top,IF=10.8
4. Linjuan Guo#, Xiu Liu#, Linjie Gao, Xinzhan Wang, Lei Zhao, Wei Zhang, Shufang Wang*, Caofeng Pan*, Zheng Yang*, Ferro-Pyro-Phototronic Effect in Monocrystalline 2D Ferroelectric Perovskite for High-Sensitive, Self-Powered, and Stable Ultraviolet Photodetector. ACS Nano 2022, 16, 1280-1290. SCI,双一区top,IF=17.1
5. Linjuan Guo#, Yaqian Qi#, Zheng Yang#, Lei Zhao, Wei Zhang, Xinzhan Wang, Haixu Liu, Guoying Yan*, Shufang Wang*, Caofeng Pan*, 2D Ruddlesden-Popper perovskite ferroelectric film for high-performance, self-powered and ultra-stable UV photodetector boosted by ferro-pyro-phototronic effect and surface passivation. Nano Energy 2022, 102, 107714. 双一区top,IF=17.6
6. Zheng Yang#, Xiaoli Li#, Linjie Gao, Wei Zhang, Xinzhan Wang, Haixu Liu, Shufang Wang*, Caofeng Pan*, Linjuan Guo*, Ferro-pyro-phototronic effect enhanced self-powered, flexible and ultra-stable photodetectors based on highly crystalized 1D/3D ferroelectric perovskite film. Nano Energy 2022, 102, 107743. 双一区top,IF=17.6
7. Zheng Yang#, Mingming Jiang#, Linjuan Guo*, Guofeng Hu, Yansong Gu, Jianguo Xi, Zhihao Huo, Fangtao Li, Shufang Wang*, Caofeng Pan*, A high performance CsPbBr3 microwire based photodetector boosted by coupling plasmonic and piezo-phototronic effects. Nano Energy 2021, 85, 105951. 双一区top,IF=17.6
8. Zheng Yang#, Huan Wang#, Linjuan Guo*, Qing Zhou, Yansong Gu, Fangtao Li, Shuang Qiao, Caofeng Pan*, and Shufang Wang*, A Self-Powered Photodetector Based on MAPbI3 Single-Crystal Film/n-Si Heterojunction with Broadband Response Enhanced by Pyro-Phototronic and Piezo-Phototronic Effects. Small 2021, 17, 2101572. 二区top,IF=13.3
9. Linjuan Guo, Yansong Gu, Zheng Yang*, Shuo Tian, Xingyuan San, Jihong Liu, Linjie Gao, Shuang Qiao*, Wang, Shufang*, CsPbBr3 QDs Modified Vertically Layered MoS2/Si Heterojunction for Fast UV-Vis-NIR Spectrum Flexible Photodetectors. Adv. Mater. Inter. 2021, 8, 2002231. SCI
10. Zheng Yang#, Junfeng Lu#, Minghua ZhuGe, Yang Cheng, Jufang Hu, Fangtao Li, Shuang Qiao, Yufei Zhang, Guofeng Hu, Qing Yang, Dengfeng Peng, Kaihui Liu, and Caofeng Pan*, Controllable Growth of Aligned Monocrystalline CsPbBr3 Microwire Arrays for Piezoelectric-Induced Dynamic Modulation of Single-Mode Lasing. Advanced Materials, 2019, 31, 1900647. SCI,双一区top,IF=29.4
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