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个人简介

王增梅,工学博士,教授,博士生导师。2004年6月于山东大学获得博士学位;同年受聘于中国海洋大学并破格晋升副教授;2006.9-2010.2 先后赴韩国,日本东北大学金属材料研究所,大阪大学从事半导体薄膜、非线性光学晶体材料的研究工作;2010.2 受聘于东南大学材料学院教授;国家技术发明奖励评审专家;人工晶体学会会员,中国硅酸盐学会会员,日本晶体学会会员;同时作为Applied Physics Letters,Journal of the American Ceramic Society, Journal of crystal growth, Journal of Alloy and Compounds等学术期刊的审稿人。

研究领域

1、新型功能材料,如一维纳米纤维、二维柔性薄膜材料及锂离子电池电极材料的制备科学及性能和应用研究 2、新型智能材料在结构健康监测中的研究

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

WeijieZhang, Zhongtao Chen, Xinli Guo, KaiJinYiXuan Wang, Long Li, YaoZhang, Zengmei Wang, Litao Sun, TongZhang, N/S co-doped three-dimensional graphene hydrogel for high performance supercapacitor, Electrochimica Acta, Volume 278, 10 July 2018, Pages 51-60, Ruijian Zhu, Zengmei Wang* , He Ma, Guoliang Yuan, Fengxia Wang, Zhenxiang Cheng ,Hideo Kimura, Poling-free energy harvesters based on robust self-poled ferroelectric fibers,Nano energy50(2018) 97-105 Gui Wei, Zengmei Wang*, Ruijian Zhu, and Hideo Kimura, PVDF/BCT-BZT Nanocomposite Film for a Piezo-Driven Self-Charging Power Cell, The electrochemical society, 2018 165(7): A1238-A1246 Qing Bai; Feng-Cui Shen; Shun-Li Li; Jiang Liu; Long-Zhang Dong; Zeng-Mei Wang*, Ya-Qian Lan, Cobalt@nitrogen-doped porous carbon fiber derived from the electrospun fiber of Bimetal-Organic Framework for highly active oxygen reduction. Small methods, 2018, 1800049 Ruijian Zhu, Yunhua Xu, Qing Bai, Zengmei Wang*, Xinli Guo, Hideo Kimura, Direct degradation of dyes by piezoelectric fibers through scavenging low frequency vibration, Chemical Physical Letters 702(2018)26-31 Hongzhe Wang, Yaoxuan Dong, Zengmei Wang*, High tunable dielectric properties of Zn and Mg alternately doped Ba0.6Sr0.4TiO3 film varactors, Journal of Alloys and Compounds 745(2018)651-658 Lindong Xing, Ruijian Zhu, Zengmei Wang*, Fengxia Wang and Hideo Kimura, Flexible tensile strain sensor based on lead-free 0.5Ba (Ti0.8Zr0.2) O3–0.5(Ba0.7Ca0.3) TiO3 piezoelectric nanofibers, Smart Mater. Struct. 26(2017)097001(7pp) Zengmei Wang*, Huanhuan Wang, Wenyan Zhao, Hideio Kimura, Epoxy-Based Composites Embedded with High Performance BZT-0.5BCT Piezoelectric Nanoparticles Powders for Damping Vibration Absorber Application, Crystal 2017,7,105 Zengmei Wang*, Zhonglan Cai, Huanhuan Wang, Zhenxiang Cheng, Jian Chen, Xinli Guo, Hideo Kimura, Lead-free 0.5Ba(Ti0.8Zr0.2)O3-0.5(Ba0.7Ca0.3)TiO3 thin films with enhanced electric properties from optimized sol-gel systems, Materials Chemistry and Physics 186(2017)528-533 Zengmei Wang* , Gui Wei, Kiyoshi Ozawa, Yaling Cai, Zhenxiang Cheng, Hideo Kimura, Nanoporous MoS2/C Composites for High Performance Lithium Ion Battery Anode Material, Electrochimica Acta, 239(2017)74-83 Fengxia Wang, Zengmei Wang*, Mahmoudiandehkordi Soroush and Amin Abedini, Energy harvesting efficiency optimization via varying the radius of curvature of a piezoelectric THUNDER, Smart Mater. Struct. 25(2016)095044(14pp) Ruijian Zhu, Jinyang Jiang, Zengmei Wang*, Zhenxiang Cheng, Hideo Kimura, High output power density nanogenerator based on lead-free 0.96(K0.48Na0.52)(Nb0.95Sb0.05)O3-0.04Bi0.05(Na0.82K0.18)0.05ZrO3 piezoelectric nanofiber, RSC Advances, 2016, 6, 66451 - 66456 蔡亚菱,李亚飞,王增梅*,张耀,陈坚,郭新立 CTAB辅助水热合成球状纳米花MoS2/C复合材料及其电化学性能研究,无机材料学报,2016,Vol 31, No.12, 1289-1294 Jian Chen*, Ying Gao, Wenlin Liu, Xiangru Shi, Zengmei Wang, Yao Zhang, Xinli Guo, Gang Liu, Wei Li, Ben D. Beake, The influence of dehydration on the interfacial bonding, microstructure and mechanical properties of poly(vinyl alcohol)/graphene oxide, Carbon 94(2015)845-855 Zhonglan Cai, Zengmei Wang*, Huanhuan Wang, Zhengxiang Cheng, Baowen Li, Xinli Guo, Kimura Hideo, Kasahara Akira. An investigation of the nanomechanical properties of (1-x)BaTi0.8Zr0.2O3-x(Ba0.7Ca0.3)TiO3 thin films, Journal of American Ceramic Society, 98(1)(2015)114-118. Zhaowang Zhu, Xinli Guo, Zengmei Wang, Guoliang Yuan, Yiping Wang,Zhonglan Cai, Liufang Chen, Jian Chen, Yao Zhang, Zhiguo Liu, Ferroelectric and piezoelectric properties of Ba(Ti0.89 Sn0.11)O3thin films synthesized by a sol–gel method,Chemical Physics Letters 638 (2015) 168–172

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