Ping Chen
Hunan University
27 Papers
2 Citations
Ping Chen is an academic researcher from Hunan University. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 1, co-authored 1 publications.
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Papers
Protocol for doping of an Sn-based two-dimensional perovskite semiconductor by incorporating SnI4 for field-effect transistors and thermoelectric devices
Yu Liu,Ping Chen,Xincan Qiu,Jing Guo,Jiangnan Xia,Huan Wei,Haihong Xie,Shijin Hou,Mai He,Xiao Wang,Zebing Zeng,Lang Jiang,Lei Liao,Yuanyuan Hu +13 more
TL;DR: In this article , the authors present a protocol to dope 2D perovskite (PEA)2SnI4 by incorporating SnI4 in the precursor solutions and detail steps for preparation of field effect transistors (FETs) and thermoelectric devices (TEs).
1
Tuning the Electrical Performance of 2D Perovskite Field‐Effect Transistors by Forming Organic Semiconductor/Perovskite van der Waals Heterojunctions (Adv. Electron. Mater. 7/2022)
Jing Guo,Yu Liu,Ping Chen,Xincan Qiu,Huan Wei,Jiangnan Xia,Huajie Chen,Zebing Zeng,Lei Liao,Yuanyuan Hu +9 more
TL;DR: In this article , the electrical performance of a perovskite field effect transistor can be tuned by controllable doping of the organic semiconductor as shown in article number 2200148 by Jing Guo, Yuanyuan Hu, and others.
1
Universal and Efficient p-Doping of Organic Semiconductors by Electrophilic Attack of Cations
Jing Guo,Yang Liu,Ping Chen,Xinhao Wang,Yanpei Wang,Xincan Qiu,Zebing Zeng,Lang Jiang,Yuanping Yi,Shun Watanabe,Lei Liao,Yugang Bai,Thuc-Quyen Nguyen,Yuanyuan Hu +13 more
- 14 Feb 2022
TL;DR: In this paper , a novel p-doping mechanism was revealed by investigating the interactions between the dopant trityl tetrakis(pentafluorophenyl) borate (TrTPFB) and poly(3-hexylthiophene) (P3HT).
Protocol for fabrication and characterization of two-dimensional lead halide perovskite thin-film transistors
TL;DR: Qiu et al. as discussed by the authors presented a protocol for fabricating 2D LHP TFTs that operate well at RT and exhibit high bias-stress stability and storage stability, and detailed measurement of device output characteristics and extraction of performance parameters.
Trap Passivation by Reactive Oxygen for Reducing Hysteresis in Organic Field-Effect Transistors
Ping Chen,Yuanyuan Hu +1 more
- 21 Aug 2022
TL;DR: In this paper , the authors developed a convenient strategy for reducing the hysteresis in fabricated OFETs by placing the devices in the atmosphere with reactive oxygen for a short time, which is probably attributed to the trap passivation effect of reactive oxygen.