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王超
2023-05-10 08:48
  • 王超
  • 王超 - 教授-电子科技大学-电子科学与工程学院-个人资料

近期热点

资料介绍

个人简历


中组部首批国家特聘青年专家入选者,四川省百人计划入选者,四川省学术和技术带头人后备人选。研究方向包括:非接触式光学监测仪器制造(光电探测技术、精密测量技术、光路设计、电路设计等)、半导体材料的生长与应用基础研究(热电材料、电池等)。近五年承担部省级以上科研项目7项,包括国家重大科研仪器研制项目和国家重点研发计划子课题。教育经历: 博士2004-2008 英国牛津大学 材料科学 硕士2000-2003 中国清华大学与中国科学院半导体所联合培养 机械材料加工 学士1996-2000 中国清华大学 机械工程 工作经历: 助教2000-2003中国清华大学机械系 副高级工程师2003-2004 中国上海中芯国际 助教2004-2008英国英国牛津大学材料系 访问科学家2008-2009 中国清华大学大学机械系 高级工程师/中国地区技术经理2008-2012 美国应用材料公司 教授/博导2012至今中国电子科技大学

研究领域


1.热电材料及器件的研发 2.锂离子电池正极材料,超级电容器和基于热力循环的热电转换电池 3.在线温度测量及高端设备仪器的研发

近期论文


1.Wang C*, Tian H, Jiang J, et al. Facile Synthesis of Different Morphologies of Cu2SnS3 for High-Performance Supercapacitors[J]. ACS Applied Materials & Interfaces, 2017. 2.Chao Wang*, Ting Zhou et.al Multicolor tunable luminescence based on Tb3+/Eu3+ doping through a facile hydrothermal route. ACS Appl. Mater. Interfaces, 2017. 3.Guoqiang Zou, Chao Wang,Xiaobo Ji* et.al.Controllable Interlayer Spacing of Sulfur-Doped GraphiticCarbon Nanosheets for Fast Sodium-Ion Batteries. small 2017. 4.Zhengming Yang,# Xue Ning,# Chao Wang,Jie Xiong* et.al,Universal laser fabrication of deepUV plasmonic metal@carbon core@shell nanoparticles,Advanced Functional Materials, 2017. 5.Zhaodong Huang,Chao Wang,Xiaobo Ji* et.al. LayerTunable Phosphorene Modulated by the CationInsertion Rate as a Sodium-Storage Anode. Adv. Mater. 2017 6.Shen Xing,Tianyu Kong, Junsheng Yu*,and Chao Wang. Realization of Performance Enhancement in TernaryPolymer Solar Cells by Broad Absorption, EfficientEnergy Transfer, and Balanced ChargeCarrier.IEEE Journal of Photovoltaics, 2017. 7.Peng Ge, Hongshuai Hou, Xiaoqing Qiu*, Qing Zeng, Chao Wang*, and Xiaobo Ji. High-rate sodium ion anodes assisted by N-doped carbon sheets.Sustainable Energy Fuels, 2017. 8.Miao Yu,Ting Zhou, Chao Wang*, Haibo Zeng*and Jie Xiong*. Universal liquidphase laser fabrication of various nanometals encapsulated by ultrathin carbon shells for deepUV plasmonics. Nanoscale, 2017. 9.Xiaojiao,Chao Wang*,Daojiang Gao* et.al.Fabrication, microstructures, luminescent and magnetic properties of LiFe(WO4)2 microcrystals.Journal of Materials Science: Materials in Electronics, 2017. 10.Chao Wang*, Yide Chen,Ping Yang*et.al.Improved thermoelectric properties of SnS synthesized by chemical precipitation.RSC Adv., 2017. 11.Q.Zeng,D.J. Gao*, C. Wang*. Highpurity helical carbon nanotubes with enhanced electrochemical properties for supercapacitors. RSC Adv.2017. 12.S. X. Wu,C. Wang*et.al. Chemical Precipitation Synthesis and Thermoelcetric Properties of Copper Sulfide. Journal of Electronic Materials, 46, 2017. 13.B. Yuan,C. Wang*, Q. Y. Zhang* et.al. Effects of Sb Substitution by Sn on the ThermoelectricProperties of ZrCoSb. Journal of Electronic Materials, 2016. 14.J. Shuai, H.Y. Geng,C. Wang,ChingWu Chu*, Z.F. Ren. Higher thermoelectric performance of Zintl phases (Eu0.5Yb0.5)1-xCaxMg2Bi2 by band engineering and strain fluctuation. PNAS, 2016. 15.Tianyu Lei, Chao Wang,Jie Xiong et.al,Multi-functional layered WS2 Nanosheets for Enhancing Lithium-Sulfur Battery Performance.Advanced Energy Materials, 2016. 16.Y. Yang*, Wei Shi*, C. Wang* et.al, Electrochemical Exfoliation of Graphite into Nitrogen-doped Graphene in Glycine Solution and its Energy Storage Properties. Electrochimica Acta, 2016. 17.Jun Chen,Chao Wang,Xiaobo Ji* et.al, Black Anatase Titania with Ultrafast SodiumStorage Performances Stimulated by Oxygen Vacancies. ACS Appl. Mate.Interfaces, 2016. 18.Guoqiang Zou, Jun Chen, Yan Zhang, Chao Wang, Zhaodong Huang, Simin Li, Hanxiao Liao, Jufeng Wang, Xiaobo Ji, Carbon-coated rutile titanium dioxide derived from titaniummetal organic framework with enhanced sodium storage behavior. Journal of Power Sources, 2016. 19.Zhou. AJ ,Wang. C,P, Mueller. E et.al, Impact of the film thickness and substrate on the thermopower measurement of thermoelectric films by the potential-Seebeck microprobe (PSM). Applied Thermal Engineering, 2016. 20.Tianyu Kong,Chao Wang et.al, Improving the Efficiency of Bulk Heterojunction Polymer Solar Cells Via Binary-Solvent Treatment. IEEE Journal of Photovoltaics,2017.

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