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个人信息Personal Information
教师拼音名称:Jiang Chen
电子邮箱:
所在单位:电子工程系
职务:副教授
办公地点:罗姆楼716
学位:博士学位
在职信息:在职
毕业院校:英国剑桥大学
学科:电路与系统
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我们的研究方向是新型半导体器件,是电子信息技术最基本的单元,具体的研究方向是基于新型有机电子材料的有机薄膜晶体管器件(organic thin-film transistor, OTFT)。该技术是一种可弯曲、低成本制造的新型半导体器件,在生物电子、柔性传感等领域具有巨大的应用前景,包括增强现实/虚拟现实、可穿戴设备、植入式设备、脑机接口等新型人机交互与医学诊疗技术。主要研究内容包括:
1. 新型TFT器件
2. 柔性TFT电路
3. TFT应用系统
4. 新型生物电子传感与刺激应用
- Chen Jiang, Hyung Woo Choi, Xiang Cheng, Hanbin Ma, David Hasko, Arokia Nathan, Printed subthreshold organic transistors operating at high gain and ultralow power, 363, 6428, 719-723, Science, 2019.
- Chen Jiang, Xiang Cheng, Arokia Nathan, Flexible ultralow-power sensor interfaces for e-skin, 107, 10, 2084-2105, Proceedings of the IEEE, 2019.
- Iek Man Lei, Chen Jiang, Chon Lok Lei, Simone Rosalie de Rijk, Yu Chuen Tam, Michael PF Sutcliffe, George Malliaras, Manohar Bance, Yan Yan Shery Huang, A neural network trained by 3D printed biomimetic cochleae provides clinical informatics for cochlear implant patients, Nature Communications, 2021 (accepted).
- Chen Jiang, Shreya Singhal, Tom Landry, Iwan Roberts, Simone De Rijk, Tim Brochier, Tobias Goehring, Yu Chuen Tan, Robert P Carlyon, Manohar Bance, An Instrumented Cochlea Model for the Evaluation of Cochlear Implant Electrical Stimulus Spread, IEEE Transactions on Biomedical Engineering, 2021.
- Linrun Feng, Chen Jiang, Hanbin Ma, Xiaojun Guo, Arokia Nathan, All ink-jet printed low-voltage organic field-effect transistors on flexible substrate, 38, 186-192, Organic Electronics, 2016.
- Nol Swaddiwudhipong, Chen Jiang, Thomas Landry, Manohar Bance, Investigating the Electrical Properties of Different Cochlear Implants, 42, 1, 59-67, Otology & Neurotology, 2021.
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