
福建福州人,硕士研究生导师,新重庆青年创新人才。2008、2011年在西南大学物理科学与技术学院获学士、硕士学位;2014年6月于吉林大学超分子结构与材料国家重点实验室获博士学位后返校任教,主要承担《大学物理实验》的教学任务。研究课题是金属卤化物钙钛矿发光材料与器件(Metal Halide Perovskites LEDs)及其相关物理过程(包括自旋-轨道耦合、电子-空穴自旋交换、能量/载流子转移、离子迁移、材料体相/界面极化过程等)。
目前,担任美国田纳西大学、美国橡树岭国家实验室客座助理研究员;重庆市自然科学基金通讯评议专家。以第一作者/通讯作者在Nature Communications、Adv. Funct. Mater、ACS Nano、Nano Energy、Laser & Photonics Reviews等主流SCI刊物上发表论文36篇。论文总引1100于次,H因子为21(Google Scholar)。申请国家发明专利一项,主持国家自然科学基金两项、重庆市自然科学基金项目四项和中央高校科研业务费两项。
联系邮箱:chenping206@126.com, pingchen@swu.edu.cn.
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教育经历(按时间倒排序):
2011/9 - 2014/6,吉林大学,高分子物理与化学,博士 (导师:李峰 教授)
2008/9 - 2011/6,西南大学,凝聚态物理,硕士 (导师:熊祖洪 教授)
2004/9 - 2008/6,西南大学,物理学,学士
科研与学术工作经历(按时间倒排序):
2014/07 - 至今,西南大学,物理科学与技术学院,副教授
2017/10 - 2019/10,美国田纳西大学,材料科学与工程系,博士后 (导师:胡斌 教授)
2010/10 - 2011/04,香港大学,电子与机电工程系,助理研究员 (导师:W. H. Choy 教授)
主持科研项目情况:
(1)国家自然科学基金(面上项目,12574040,主持):50 万元,2026.01-2029.12,具有单向、线偏振光发射能力的准二维钙钛矿发光二极管。
(2)国家自然科学基金(青年基金项目,11504300,主持):25 万元,2016.01-2018.12,利用有机磁场效应探索有机电致发光中的热致延迟荧光过程(已结题)。
(3)重庆市自然科学基金(新重庆青年创新人才项目资助,CSTB2024NSCQ-QCXMX0056,主持):30万元,2025-01至2027-12,线偏振准二维钙钛矿发光二极管的开发与应用。
(4)重庆市自然科学基金 (面上项目,CSTB2022NSCQ-MSX0438,主持):10 万元,2022.08-2025.07,基于多量子阱的高效率准二维钙钛矿发光二极管制备及其能量转移机理研究(已结题)。
(5)重庆市自然科学基金(面上项目,cstc2019jcyj-msxmX0015,主持):10 万元,2019.07-2022.06,有机-无机杂化钙钛矿发光材料与器件的磁场效应研究(已结题)。
(6)重庆市基础与前沿研究计划(一般项目,cstc2015jcyjA50002,主持):5 万元,2015.08-2018.07,基于电荷转移态的有机磁场效应研究(已结题)。
(7)2021年重庆市留创项目资助(启动项目,主持):5 万元,2021.10。基于金纳米粒子表面等离激元增强的金属卤化物钙钛矿发光二极管(已结题)。
(8)中央高校基本科研业务费专项资金项目(一般项目,XDJK2019C050,主持):10 万元,2019.03-2021.12,基于金纳米粒子表面等离激元增强有机-无机杂化钙钛矿电致发光特性的研究(已结题)。
(9)中央高校基本科研业务费专项资金项目(一般项目,XDJK2015C046,主持):5 万元,2015.01-2017.01,利用瞬态电致发光研究外磁场作用下载流子的输运/复合过程(已结题)。
(10) 西南大学博士基金(引进人才计划,SWU114042,主持):10 万元,2014.10-2017.01,有机光电器件中载流子输运/复合的动力学过程及其磁场效应研究(已结题)。
(11)四川弯流机电科技有限公司合作研究项目(合同号:4412100815,主持):2.3万元,2021.10-2022.10.12,新型蓝光微纳光电器件(已结题)。
(12)西南大学海外留学归国资助:7.2万元,2020.07(已结题)。
(13)西南大学实验技术研究项目(合同号:SYJ2021031,主持):1万元,2021.05-2022.05,一种基于运算放大器的高灵敏度惠斯通电桥(已结题)。
作为“第一作者”或“通讯作者(带*号)”发表的文章:
(01)Yanju Luo, Kai Zhang, Zhenming Ding, Ping Chen(陈平)*, Xiaomei Peng, Yihuan Zhao, Kuan Chen, Chuan Li, Xujun Zheng, Yan Huang, Xuemei Pu, Yu Liu*, Shi-Jian Su*, Xiandeng Hou and Zhiyun Lu*. Ultra-fast triplet-triplet-annihilationmediated high-lying reverse intersystem crossing triggered by participation of nπ*-featured excited states.
Nature Communications 13, 6892, 2022.
(02)Bo Chen, He Liu,* Jonghee Yang,* Mahshid Ahmadi, Qi Chen,* Ni Yin, Shitong Zhang, Meiqin Xiao, Haoyue Zhang, Long Xu, and Ping Chen (陈平)*. Coordination of Thermally Activated Delayed Fluorescent Molecules for Efficient and Stable Perovskite Light-Emitting Diodes.
Adv. Funct. Mater. 2402522, 2024.
(03)Meiqin Xiao, Simin Gong, Jonghee Yang*, Yi Wang, Junyu Nie, Wenzhe Li*, Jiang Cheng*, Hongkang Xu, Wei Zhang*, Junzhong Wang, and Ping Chen (陈平)*. A Biaxially Polarized Molecular Interlayer for Efficient and Color-Stable Perovskite LEDs.
Adv. Funct. Mater. e19358, 2025.
(04)Meiqin Xiao, Jonghee Yang,* Wei Zhang,* Long Xu, Jidong Zhang,* Wenzhe Li,* Chen Chen, Tingwei Zhou, Haoyue Zhang, Bo Chen, Junzhong Wang, and Ping Chen(陈平)*. Coherence-Programming for Efficient Linear Polarized Perovskite Light-Emitting Diodes.
ACS Nano, 18, 29261, 2024.
(05)Ting Xiang, Ting Li, Miaosheng Wang, Wei Zhang,* Mahshid Ahmadi, Xiaoyan Wu*, Tianfei Xu, Meiqin Xiao, Long Xu, and Ping Chen(陈平)*.12-Crown-4 Ether Assisted In-situ Grown Perovskite Crystals for Ambient Stable Light Emitting Diodes.
Nano Energy 95, 107000, 2022.
(06)Ping Chen(陈平), Yan Meng, Mahshid Ahmadi, Qiming Peng, Chunhong Gao, Long Xu, Ming Shao, Zuhong Xiong*, and Bin Hu*. Charge-transfer versus energy-transfer in quasi-2D perovskite light-emitting diodes.
Nano Energy 50, 615, 2018.
(07)Ting Li, Ting Xiang, Miaosheng Wang, Wei Zhang,* Jishan Shi, Ming Shao, Tianfei Xu, Mahshid Ahmadi, Xiaoyan Wu,* Zhao Gao, Long Xu, and Ping Chen(陈平)*. Unraveling the Energy Landscape and Energy Funneling Modulated by Hole Transport Layer for Highly Efficient Perovskite LEDs.
Laser & Photonics Reviews,15, 2000495, 2021.
(08)Meiqin Xiao, Ting Xiang, Dohyung Kim, Miaosheng Wang, Wei Zhang,* Mahshid Ahmadi, Ting Li, Xiaoyan Wu,* Long Xu, and Ping Chen(陈平)*. Superior External Quantum Efficiency of LEDs via Quasi-2D Perovskite Crystals Implanted with Phenethylammonium Acetate.
ACS Appl. Mater. & Interface 14, 45352, 2022.
(09)Ping Chen(陈平), Li-Ping Wang, Wan-Yi Tan, Qi-Ming Peng, Shi-Tong Zhang, Xu-Hui Zhu*, and Feng Li*. Delayed Fluorescence in a Solution-Processable Pure Red Molecular Organic Emitter Based on Dithienylbenzothiadiazole: A Joint Optical, Electroluminescence, and Magnetoelectroluminescence Study.
ACS Appl. Mater. & Interface 7, 2972, 2015.
(10)Haoyue Zhang, Yuru Tang, Chen Chen,* Meiqin Xiao, Jonghee Yang, Wei Zhang,* Chaochao Qin,* Ting Xiang, Long Xu, and Ping Chen*(陈平),Enhanced Charging/Discharging Process in Perovskite Active Light Source for High-Speed Visible-Light Communication.
Adv. Opt. Mater. 2303051, 2023.
(11)Ping Chen(陈平), Zuhong Xiong*, Qiming Peng, Jiangwen Bai, Shitong Zhang, and Feng Li*. Magneto-electroluminescence as a tool to discern the origin of delayed fluorescence: Reverse Intersystem Crossing or Triplet-Triplet Annihilation?
Adv. Opt. Matter. 2, 142, 2014.
(12)Tianfei Xu, Yan Meng, Miaosheng Wang, Mingxing Li, Mahshid Ahmadi, Zuhong Xiong, Shubin Yan, Ping Chen (陈平)* and Bin Hu*. Poly(ethylene oxide)-assisted energy funneling for efficient perovskite light emission.
J. Mater. Chem. C 7, 8287, 2019.
(13)Tianfei Xu, Wei Li, Xiaoyan Wu, Mahshid Ahmadi, Long Xu and Ping Chen(陈平)*. High-performance blue perovskite light-emitting diodes based on the ‘‘far-field plasmonic effect’’ of gold nanoparticles.
J. Mater. Chem. C 8, 6615, 2020.
(14)Ping Chen(陈平),Ziyang Xiong, Xiaoyan Wu, Ming Shao, Xingjuan Ma, Zu-hong Xiong and Chunhong Gao*. Highly Efficient Perovskite Light-Emitting Diodes Incorporating Full Film Coverage and Bipolar Charge Injection.
J. Phys. Chem. Lett. 8, 1810, 2017.
(15)Ping Chen(陈平),Ziyang Xiong, Xiaoyan Wu, Ming Shao, Yan Meng, Zu-hong Xiong and Chunhong Gao*. Nearly 100% Efficiency Enhancement of CH3NH3PbBr3 Perovskite Light-Emitting Diodes by Utilizing Plasmonic Au Nanoparticles.
J. Phys. Chem. Lett. 8, 3961, 2017.
(16)Jie Zhou, Ping Chen(陈平)(共同第一作者), Xu Wang, Yan Wang, Yi Wang, Feng Li*, Minghui Yang, Yan Huang, Junsheng Yu*, and Zhiyun Lu*. Charge-transfer-featured materials―promising hosts for fabrication of efficient OLED through triplet harvesting via triplet fusion.
Chem. Commun. 50, 7586, 2014.
(17)Ping Chen(陈平), Qiming Peng, Liang Yao, Na Gao and Feng Li*. Identifying the efficient inter-conversion between singlet and triplet charge-transfer states by magneto-electroluminescence study.
Appl. Phys. Lett. 102, 063301, 2013.
(18)P. Chen(陈平), Q. L. Song, W. C. H. Choy, B. F. Ding, Y. L. Liu and Z. H. Xiong*. A possible mechanism to tune magneto-electroluminescence in organic light-emitting diodes through adjusting the triplet exciton density.
Appl. Phys. Lett. 99, 143305, 2011.
(19)P. Chen(陈平), Y. L. Lei, Q. L. Song, Q. M. Zhang, Y. Zhang, R. Liu and Z. H. Xiong*. Control of magnetoconductance through modifying the amount of dissociated excited states in tris-(8-hydroxyquinoline) aluminum-based organic light-emitting diodes.
Appl. Phys. Lett. 95, 213304, 2010.
(20)P. Chen(陈平), Y. L. Lei, Q. L. Song, Y. Zhang, R. Liu, Q. M. Zhang, and Z. H. Xiong*. Magneto-electroluminescence in tris (8-hydroxyquinolato) aluminum-based organic light-emitting diodes doped with fluorescent dyes.
Appl. Phys. Lett. 96, 203303, 2009.
(21)De Yuan, Lianbin Niu, Qiusong Chen, Weiyao Jia, Ping Chen(陈平)*, and Zuhong Xiong*. The Triplet-Charge Annihilation in Copolymer-Based Organic Light Emitting Diodes: Through “Scattering Channel” or “Dissociation Channel”?
Phys. Chem. Chem. Phys. 17, 27609, 2015.
(22)Xiaoyan Wu,* Yanglong Li, Lingyuan Wu, Bo Fu, Guodong Liu, Dayong Zhang, Jianheng Zhao,Ping Chen(陈平)* and Linlin Liu*. Enhancing perovskite film fluorescence by simultaneous near- and far-field effects of gold nanoparticles.
RSC Adv. 7, 35752, 2017.
(23)Long Xu, Yan Meng, Caixia Xu* and Ping Chen(陈平)*. Room temperature two-photon-pumped random lasers in FAPbBr3/polyethylene oxide (PEO) composite perovskite thin film.
RSC Adv. 8, 36910, 2018.
(24)Chunyan Lin, Ping Chen (陈平)* (共同第一作者兼通讯作者), ZiYang Xiong, Debei Liu, Gang Wang, Yan Meng, Qunliang Song*. Interfacial Engineering with Ultrathin poly (9,9-di-n-octylfluorenyl-2,7-diyl) (PFO) Layer for High Efficient Perovskite Light-Emitting Diodes.
Nanotechnology 29, 075203, 2018.
(25)Yan Meng, Xiaoyan Wu, Ziyang Xiong, Chunyan Lin, Zuhong Xiong, Ethan Blount, and Ping Chen(陈平)*. Electrode Quenching Control for Highly Efficient CsPbBr3 Perovskite Light-Emitting Diodes via Surface Plasmon Resonance and Enhance Hole Injection by Au Nanoparticles.
Nanotechnology 29, 175203, 2018.
(26)Yan Meng, Mahshid Ahmadi, Xiaoyan Wu, Tianfei Xu, Long Xu, Zuhong Xiong, and Ping Chen(陈平)*. High performance and stable all-inorganic perovskite light emitting diodes by reducing luminescence quenching at PEDOT:PSS/Perovskites interface. (ESI高被引论文)
Org. Electron. 64, 47, 2019.
(27)Ping Chen(陈平), De Yuan, Lianbin Niu*, Chunhong Gao and Zuhong Xiong*. Triplet Harvesting in Polyfluorene Copolymer-Based Organic Light Emitting Diodes through Thermally Activated Reverse Intersystem Crossing.
Org. Electron. 41, 100, 2017.
(28)P, Chen (陈平), M. L. Li, Q. M. Peng, F. Li*, Y. Liu*, Q. M. Zhang, Y. Zhang and Z. H. Xiong*. Direct evidence for the electron-hole pair mechanism by studying the organic magneto-electroluminescence based on charge-transfer states.
Org. Electron. 12, 1774, 2012.
(29)Ping Chen(陈平), Junhua Huang, Zuhong Xiong, and Feng Li*. The roles of traps in the energy loss for aged organic solar cells: A transient photovoltage study.
Org. Electron. 14, 621, 2013.
(30)许青林, 徐伟, 项婷, 李婷, 吴小龑*, 李巍, 邱学军, 陈平*.金纳米粒子修饰ITO阳极的高效率红光钙钛矿发光二极管.
物理学报,70, 207803, 2021.
(31)Xiaoyan Wu, Yanglong Li, Wei Li, Lingyuan Wu, Bo Fu, Weiping Wang, Guodong Liu*, Dayong Zhang, Jianheng Zhao,Ping Chen(陈平)*. Enhancing Optical Pumped Organic- Inorganic Hybrid Perovskite Amplified Spontaneous Emission via Compound Surface Plasmon Resonance.
Crystals 8, 124, 2018.
(32)陈平, 雷衍连, 刘荣, 张巧明, 张勇, 熊祖洪*. DCM染料掺杂对有机电致发光磁效应的影响.
中国科学G辑,2009,39(10): 1459~1466.
(33)熊自阳, 高春红*, 王治强, 马兴娟, 熊祖洪,陈平*. 基于有机小分子和有机-无机杂化钙钛矿复合发光层的白光PeLED.
科学通报,2017,62(24): 2780~2787.
(34)熊自阳, 吴小龑*, 高春红*, 林春燕, 熊祖洪, 陈平*. 基于金纳米粒子修饰空穴注入层的高效率钙钛矿发光二极管.
科学通报,2017,62(32): 3774~3782.
(35)孟妍, 牛连斌, 许龙, 林春燕, 熊自阳, 熊祖洪, 陈平*.基于PA2(CsPbBr3)n-1PbBr4二维层状钙钛矿的电致发光二极管.
科学通报,2017,63(1): 53~60.
(36)吴小龑,熊自阳,吴凌远,李阳龙,付博,刘国栋,王伟平,陈平*. 基于金纳米粒子增强钙钛矿荧光发射的研究.
光学学报,2017,37,0924001.
发明专利:
一种双参数、高灵敏度的有机小分子半导体薄膜磁性传感器, 熊祖洪、 陈平、 雷衍连、张巧明;专利号:CN201010162269,专利授权公告日,2010.10.13
个人获奖及荣誉(代表性):
1. “2024年新重庆青年创新人才”;
2. “2020年西南大学兴明青年教师奖”;
3. “2020年重庆市自然科学进步二等奖 (5/5)”;
4. “2021年西南大学优秀研究生导师”;
5.“2022年西南大学优秀本科生班主任”。
指导学生获奖(代表性):
1. 国家奖学金 2016级硕士研究生 孟妍;
2. 国家奖学金 2018级硕士研究生 许添飞;
3. 国家奖学金 2019级硕士研究生 李婷;
4. 西南大学 “唐立新奖学金” 2018级硕士研究生 许添飞;
5. 西南大学 “九环新越科研创新奖” 2018级硕士研究生 许添飞;
6. 重庆市大学生物理创新竞赛 一等奖 2018级硕士研究生 许添飞;
7. 重庆市大学生物理创新竞赛 一等奖 2020级硕士研究生 肖美琴;
8. 重庆市大学生物理创新竞赛 一等奖 2021级硕士研究生 张皓玥;
9. 重庆市第十届“科慧杯”研究生创新创业大赛科技创新组 一等奖 2020级硕士研究生 肖美琴;
10. 中央高校基本科研业务费专项 (XDJK2019D035) 2018级硕士研究生 许添飞;
11. 重庆市研究生科研创新项目(CYS20102) 2019级硕士研究生 李婷;
12.重庆市研究生科研创新项目(CYS23186) 2021级硕士研究生 张皓玥;
13. 国家级“大学生 创新创业训练计划”项目 (202110635095) 2019级本科生 徐伟;
14. 重庆市“大学生 创新创业训练计划”项目 (X202010635177) 2018级本科生 许清林;