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电子邮箱:
whuang@uestc.edu.cn
入职时间:
2021-06-09
所在单位:
自动化工程学院
学历:
博士研究生毕业
办公地点:
六号科研楼B540
性别:
男
学位:
工学博士学位
职称:
教授
在职信息:
在岗
毕业院校:
电子科技大学
博士生导师
曾获荣誉:
国家青年人才计划(2022)
四川省特聘专家(2021)
电子科技大学“校百人”(2021)
电子科技大学“成电杰出研究生”(2016)
学科:
仪器科学与技术
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[21] Porous semiconductor polymers enable high performance electrochemical transistors,
Advanced Materials
, vol. 33, pp. 2007041,
[22] Teaching an Old Anchoring Group New Tricks: Enabling Low-Cost, Eco-Friendly Hole-Transporting Materials for Efficient and Stable Perovskite Solar Cells,
Journal of the American Chemical Society
, vol. 142, pp. 16632,
[23] Printable Organic-Inorganic Nanoscale Multilayer Gate Dielectrics for Thin-Film Transistors Enabled by a Polymeric Organic Interlayer,
Advanced Functional Materials
, vol. 30, pp. 2005069,
[24] Frequency-Agile Low-temperature Solution-Processed Alumina Dielectrics for Inorganic and Organic Electronics Enhanced by Fluoride Doping,
Journal of the American Chemical Society
, vol. 142, pp. 12440,
[25] Experimental and Theoretical Evidence for Hydrogen Doping in Polymer Solution Processed Indium Gallium Oxide,
Proceedings of the National Academy of Sciences, U. S. A.
, vol. 117, pp. 18231,
[26] π-Extended Naphthalene Diimide Derivatives for N-type Semiconducting Polymers,
Chemistry of Materials
, vol. 32, pp. 5317,
[27] Mixed-Flow Design for Microfluidic Printing of Two-phase Polymer Semiconductor Systems,
Proceedings of the National Academy of Sciences, U. S. A.
, vol. 117, pp. 17551,
[28] Engineering Intrinsic Flexibility in Polycrystalline Molecular Semiconductor Films by Grain Boundary Plasticization,
Journal of the American Chemical Society
, vol. 142, pp. 5487,
[29] Controllable growth of LiMn2O4 by carbohydrate-assisted combustion synthesis for high performance Li-ion batteries,
Nano Energy
, vol. 64, pp. 103936,
[30] Simultaneous Bottom‐Up Interfacial and Bulk Defect Passivation in Highly Efficient Planar Perovskite Solar Cells using Nonconjugated Small‐Molecule Electrolytes,
Advanced Materials
, no. 31, pp. 1903239,
[31] Cinnamate-Functionalized Natural Carbohydrates as Photopatternable Gate Dielectrics for Organic Transistors,
Chemistry of Materials
, vol. 31, pp. 7608,
[32] Polymer Doping Enables Two-Dimensional Electron Gas for High Performance Homojunction Oxide Thin-Film Transistors,
Advanced Materials
, vol. 31, pp. 1805082,
[33] Metal Composition and Polyethylenimine Doping Capacity Effects on Semiconducting Metal Oxide-Polymer Blend Charge Transport,
Journal of the American Chemical Society
, vol. 140, pp. 5457,
[34] UV-Ozone Interfacial Modification in Organic Transistors for High-Sensitivity NO2 Detection,
Advanced Materials
, vol. 29, pp. 1701706,
[35] Metal oxide transistors via polyethylenimine doping of the channel layer: interplay of doping, microstructure, and charge transport,
Advanced Functional Materials
, vol. 26, pp. 6179,
共35条 2/2
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