王烨
近期热点
资料介绍
个人简历
王烨,男,1981年生,2013年6月博士毕业于南洋理工大学(新加坡),获微电子学专业博士学位。现郑州大学物理学院教授,硕士研究生导师。近年来一直从事储能材料和器件的研究工作,包括3D打印锂/钠离子电池,锂/钠金属电池。发表SCI论文90余篇,引用3000余次,主持国家级科研项目2项,校级项目2项。2019年入选河南省‘中原青年拔尖人才’支持计划。研究项目(1)国家自然科学基金NSFC-河南联合基金项目,U1804132,高性能无枝晶三维石墨烯泡沫纳米复合材料钠金属负极机理和应用研究,49万,主持,在研。(2)国家自然科学基金青年科学基金项目,21603192,过渡金属氧化物纳米颗粒催化SnO2锂离子电池负极材料不可逆反应的机理研究,20万,主持,结项。(3)郑州大学青年拔尖人才项目,高性能3D打印储能器件及其储能机制的研究,2018/05-2023/02,50万元,主持。(4)郑州大学物理学科推进计划项目:3D打印石墨烯气凝胶锂金属电池负极的机理和应用研究,2018WLTJ02,2018/07-2021/06,60万元,在研,主持。科研成果以第一作者和通讯作者在Advanced Energy Materials, Energy Storage Materials, Small, NPG Asia Materials, Journal of Materials Chemistry A等国际期刊上已发表SCI学术论文90余篇,引用3000余次,H-index30。研究领域
(1)3D打印锂/钠离子电池:锂/钠离子电池负极纳米材料的设计和合成:金属氧化物、硫化物、磷化物以及与石墨烯、CNT等复合高性能纳米复合材料。(2)锂/钠金属电池:锂/钠金属三维宿主,锂/钠金属负极保护等。""近期论文
1.Y. Wang, Y. V. Lim, S. Huang, M. Ding, D. Kong, Y. Pei, T. Xu, Y. Shi, X. Li, H. Y. Yang‘Enhanced sodium storage kinetics by volume regulation and surface engineering via rationally designed hierarchical porous FeP@C/rGO’, Nanoscale 12 (2020) 4341–4351. (封面文章) (IF:6.97). 一区.2.C. Y. Ma, T. Xu, Y. Wang*(通讯),‘Advanced Carbon Nanostructures for Future High Performance Sodium Metal Anodes’, Energy Storage Materials, 25 (2020) 811-826. 即时IF: 15.09.3.C. Yan, T. Xu, C. Ma, J. Zang, J. Xu, Y. Shi, D. Kong, C. Ke, X. Li and Y. Wang*(通讯),‘Dendrite-free Li metal plating/stripping onto three-dimensional vertical graphene@carbon-cloth host’, Frontiers in Chemistry, 2019, 7, 714. (IF: 3.782). 二区.4.Y. Wang, D. Kong, S. Z. Huang, Y. Shi, M. Ding, Y. V. Lim, T. Xu, F. Chen, X. Li and H. Y. Yang, ‘3D Carbon Foam Supported WS2 Nanosheets for Cable-shaped Flexible Sodium Ion Batteries’, J. Mater. Chem. A, 6 (2018) 10813-10824. (IF: 10.733), 一区.5.X. Wang, D. Kong, Z. X. Huang, Y. Wang*(通讯) and H. Y. Yang*(通讯), ‘Nontopotactic Reaction in Highly Reversible Sodium Storage of Ultrathin Co9Se8/rGO Hybrid Nanosheets’, Small, 13 (2017), 1603980.(IF:10.856) 一区.6.Y. Wang, D. Kong, W. Shi, B. Liu, G. J. Sim, Q. Ge and H. Y. Yang, ‘Ice Templated Free-standing Hierarchically WS2/CNT-rGO Aerogel for High-performance Rechargeable Lithium and Sodium Ion Batteries’, Adv. Energy Mater. 6 (2016), 1601057. (IF:24.844), 一区.7.Y. Wang, B. Chen, D. H. Seo, J. I. Wong, Z. J. Han, K. Ostrikov, H. Zhang, H. Y. Yang, ‘MoS2-coated vertical graphene nanosheets for high-performance rechargeable lithium-ion batteries and hydrogen production’ NPG Asia Materials, 8 (2016) e268. (IF:8.052), 一区.8.Y. Wang, G. Z. Xing, Z. J. Han, Y. M. Shi, J. I. Wong, Z. X. Huang, K. Ostrikov, H. Y. Yang, ‘Pre-lithiation of onion-like carbon/MoS2 nano-urchin anodes for high performance re chargeable lithium ion batteries’, Nanoscale, 6 (2014) 8884-8890. (IF:6.97). 一区.9.Y. Wang, Z. J. Han, S. F. Yu, H. H. Song, K. Ostrikov, H. Y. Yang, ‘Core-leaf onion-like carbon/MnO2 hybrid nano-urchins for rechargeable lithium-ion batteries’, Carbon, 64 (2013) 230-236. (IF: 7.466), 一区.10.Y. Wang, F. Yan, S. Liu, A. Y. S. Tan, X. W. Sun, H. Y. Yang,‘Onion-like carbon matrix supported Co3O4 nanocomposites: highly reversible anode material for lithium ion batteries with excellent cycling stability’, J. Mater. Chem. A, 1, (2013) 5212-5216. (IF: 10.733), 一区. 相关热点
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