个人简介
1998年本科毕业于浙江大学材料系,2004年博士毕业于中国科学院上海微系统与信息技术研究所,之后在英国剑桥大学、美国密西根大学和斯坦福大学从事博士后科研和访问学者。回国先后在湖南大学物理与微电子学院、科学院宁波材料所从事科研和教学工作。2013年4月加盟南京大学电子科学与工程学院
研究领域
a)氧化物薄膜晶体管及其新型平板显示应用
b)神经形态器件及其类脑芯片应用
近期论文
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1)Liqiang Zhu, Changjin Wan, Liqiang Guo, Yi Shi, and Qing Wan*. “Artificial Synapse Network on Inorganic Proton Conductor for Neuromorphic Systems” Nature Communications, 5, 3158, DOI: 10.1038/ncomms4158 (2014)
2)Changjin Wan, Wei Wang, Liqiang Zhu, Yanghui Liu, Ping Feng, Zhaoping Liu, Yi Shi, and Qing Wan*, “Flexible Metal Oxide/Graphene Oxide Hybrid Neuromorphic Devices on Flexible Conducting Graphene Substrates”, Advanced Materials. 28, 5878-5885 (2016).
3)Yanghui Liu, Liqiang Zhu*, Ping Feng, Yi Shi, and Qing Wan*, “Freestanding Artificial Synapses Based on Laterally Proton-Coupled Transistors on Chitosan Membranes”, Advanced Materials. 27, 5599 (2015).
4)Ning Liu, Yanghui Liu, Liqiang Zhu, Yi Shi, and Qing Wan*, “Low-Cost pH Sensors Based on Low-Voltage Oxide-Based Electric-Double-Layer Thin film Transistors”, IEEE Electron Device Letters. 35, 482, 484 (2014).
5)Jumei Zhou, Yanghui Liu, Yi Shi, and Qing Wan* “Solution-Processed Chitosan-Gated IZO-Based Transistors for Mimicking Synaptic Plasticity” IEEE Electron Device Letters. 35,280-282 (2014).
6)Changjin Wan, Liqiang Zhu, Yanghui Liu, Ping Feng, Zhaoping Liu, Hailiang Cao, Peng Xiao, Yi Shi, and Qing Wan*, “Proton Conducting Graphene Oxide Coupled Neuron Transistors for Brain-Inspired Cognitive Systems”. Advanced Materials. 28, 3557 (2016).
7)Jumei Zhou, Changjin Wan, Liqiang Zhu, Yi Shi, and Qing Wan*, “Synaptic behaviors mimicked in flexible oxide-based transistors on plastic substrates”, IEEE Electron Device Letters. 34,1433-1435 (2013).
8)Xiang Wan, Yi Yang, Ping Feng, Yi Shi, and Qing Wan*, “Short-Term Plasticity and Synaptic Filtering Emulated in Electrolyte Gated IGZO Transistors”, IEEE Electron Device Letters. 37, 299-302 (2016).
9)Feng Shao, Changjin Wan, Ping Feng, Xiang Wan, Yi Yang, Liqiang Zhu, Yi Shi, and Qing Wan*, “Multi-functional Logic Demonstrated in a Flexible Multi-Gate Oxide-based Electric-Double-Layer Transistor on Paper Substrate”, Advanced Electronic Materials. 3, 1600509, (2017).
10)Jie Jiang, Qing Wan*, Jia Sun, and Aixia Lu, “Ultralow-voltage transparent electric-double-layer thin-film transistors processed at room-temperature”, Applied Physics Letters.95, 152114 (2009).