王文辉
近期热点
资料介绍
个人简历
2019年8月入选海外高层次人才C类。目前共已发表SCI学术论文36篇,其中包括第一/通讯作者22篇。工作主要发表在Journal of Power Sources, Chemical Engineering Journal, Energy Storage Materials, ACS Applied Materials & Interfaces, Carbon等知名杂志上。1. 每年招收硕士研究生3名。欢迎乐观、勤奋,同时有学术追求或想在逻辑思维能力上有极大提高的学生申请。2. 每年招收博士研究生1-2名(与李朝林教授联合),鼓励并推荐优秀的博士研究生出国联合培养1-2年。3. 长期招聘能源存储和环境相关方向的优秀博士后,年薪不少于26万(薪资6800*12+深圳市免税补贴18w每年+课题组发文章奖励)教育与工作经历2009.09-2013.07 哈尔滨工业大学,化学工程与工艺(电化学)2013.08-2018.03 香港中文大学,材料科学与工程2019.02至今 哈尔滨工业大学(深圳),环境科学与工程发明专利“一种菱方结构磷酸钒锂基电池材料及其制备方法”, 戴长松, 王文辉, 纪大龙, 李佳杰, 专利申请号: 201110451571.3 (已授权)任教和任导师经历指导学生经历: 侯振,硕士,指导期间成果(2018.01-2019.07):4篇JCR一区论文,毕业去向:香港理工大学攻读博士赵西夏,博士,指导期间成果(2018.01-2019.07):4篇JCR一区论文,毕业去向:齐鲁工业大学国家重点实验室讲师研究领域
再生水安全利用;海水淡化;绿色二次电池;高级氧化;电化学""近期论文
2012-20161. Wenhui Wang, Jiaolong Zhang, Yue Lin, Fei Ding, Zhenyu Chen, and Changsong Dai, “A new carbon additive compounded Li3V1.97Zn0.05(PO4)3/C cathode for plug-in hybrid electric vehicles”, Electrochimica Acta 170 (2015) 269-275 (JCR-Q1, IF=5.383) 2. Wenhui Wang#, Jiaolong Zhang#, Yue Lin, Zheng Jia, and Changsong Dai, “A compromise of electrochemical performances of Li3V2(PO4)3/C upon cycling within a suitable potential range”, Electrochimica Acta 116 (2014) 490-494 (JCR-Q1, IF=5.383)3. Wenhui Wang, Zhenyu Chen, Jiaolong Zhang, Changsong Dai, Jiajie Li, and Dalong Ji, “A comparative structural and electrochemical study of monoclinic Li3V2(PO4)3/C and rhombohedral Li2.5Na0.5V(2?2x/3)Nix(PO4)3/C”, Electrochimica Acta 103 (2013) 259-265 (JCR-Q1, IF=5.383)4. Wenhui Wang#, Jiaolong Zhang#, Zheng Jia, Changsong Dai, Yongfeng Hu, Jigang Zhou, and Qunfeng Xiao, “Enhancement of the cycling performance of Li3V2(PO4)3/C by stabilizing the crystal structure through Zn2+ doping”, Physical Chemistry Chemical Physics 16 (2014) 13858-13865 (JCR-Q1, IF=3.567)5. Yue Lin, Wenhui Wang*, Jiaolong Zhang, and Changsong Dai*, “Preliminary Study of Li3V2(PO4)3/C for Aqueous Rechargeable Lithium-Ion Batteries Based on Mild Electrolyte”, ECS Electrochemistry Letters 3(11) (2014) A105-A107 (JCR-Q3, IF=1.962)6. Wenhui Wang, Zhenyu Chen, Changsong Dai, Dalong Ji, Jiajie Li, and Jie Wei, “A Comparative Structural and Electrochemical Study of Monoclinic Li3V2(PO4)3/C and Rhombohedral Li2.5Na0.5V2(PO4)3/C”, Chinese Journal of Inorganic Chemistry 28 (2012) 1070-1074 (JCR-Q4, IF=0.797) 7. Jiaolong Zhang, Wenhui Wang, Yingshun Li, and Denis Y.W. Yu, “Sodium storage capability of spinel Li4Mn5O12”, Electrochimica Acta 185 (2015) 76-82 (JCR-Q1, IF=5.383) 8. Zheng Jia, Wenhui Wang, Zheng Liu, Fangna Jia, Rujuan Zheng, and Changsong Dai, “The Influence of Different Ball-Milling Dispersants on the Structure and Performance of Li3V2(PO4)3/C Composites”, International Journal of Electrochemical Science 8 (2013) 6408-6424 (JCR-Q4, IF=1.284) 9. Rujuan Zheng, Li Zhao, Wenhui Wang, Yuanlong Liu, Quanxin Ma, Deying Mu, Ruhong Li and Changsong Dai, “Optimized Li and Fe recovery from spent lithium-ion batteries via a solution-precipitation method”, RSC Advances 6 (2016) 43613-43625 (JCR-Q2, IF=3.049)10. Yuxiang Zhou, Zheng Liu, Jiaolong Zhang, Wenhui Wang, Yuanlong Liu, Xiujuan Min, and Changsong Dai, “Effect of Amount of Water Dispersant on Morphological and Electrochemical Properties of Li3V2(PO4)3/C Prepared with Carbothermic Reduction Method”, Journal of The Electrochemical Society 161(6) (2014) A968-A973 (JCR-Q1, IF=3.120) 2017-20181. Wenhui Wang, Liang Shi, Danni Lan, and Quan Li, “Improving cycle stability of SnS anode for sodium-ion batteries by limiting Sn agglomeration”, Journal of Power Sources 377 (2018) 1-6 (JCR-Q1, IF=7.467)2. Wenhui Wang, Jiaolong Zhang, Denis Y.W. Yu, and Quan Li, “Improving the cycling stability of Sn4P3 anode for sodium-ion battery”, Journal of Power Sources 364 (2017) 420-425 (JCR-Q1, IF=7.467)3. Wenhui Wang, Liang Shi, and Quan Li, “Porous SnSbNPs@3D-C anode with improved stability for sodium-ion battery”, Journal of The Electrochemical Society 165(7) (2018) A1455-A1459 (JCR-Q1, IF=3.120) 4. Danni Lan, Wenhui Wang, and Quan Li, “Cu4SnP10 as a promising anode material for sodium ion batteries”, Nano Energy 39 (2017) 506-512 (JCR-Q1, IF=15.548)5. Danni Lan, Wenhui Wang, Liang Shi, Yuan Huang, Liangbin Hu, and Quan Li, “Phase Pure Sn4P3 Nanotops by Solution-Liquid-Solid Growth for Anode Application in Sodium Ion Batteries”, Journal of Materials Chemistry A 5 (2017) 5791-5796 (JCR-Q1, IF= 10.733)6. Liang Shi, Wenhui Wang, Chunyan Wu, Jia Ding, and Quan Li, “Synthesis of Cu2SnS3 nanosheets as an anode material for sodium ion batteries”, Journal of Alloys and Compounds 699 (2017) 517-520 (JCR-Q1, IF=4.175) 7. Liang Shi, Wenhui Wang, and Jia Ding, “Synthesis of sword-like CuSbS2 nanowires as an anode material for sodium-ion batteries”, Ceramics International 44 (2018) 13609-13612 (JCR-Q1, IF=3.450)8. Rujuan Zheng, Wenhui Wang, Yunkun Dai, Quanxin Ma, Yuanlong Liu, Deying Mu, Ruhong Li, Jie Ren, and Changsong Dai, “A closed-loop process for recycling LiNixCoyMn(1-x-y)O2 from mixed cathode materials of lithium-ion batteries”, Green Energy & Environment 2 (2017) 42-50 (CiteScore = 5.11)20191. Jiaolong Zhang, Wenhui Wang*, and Baohua Li*, “Enabling high sodium storage performance of micron-sized Sn4P3 anode via diglyme-derived solid electrolyte interphase”, Chemical Engineering Journal (2019) In press (JCR-Q1, IF=8.47, * Corresponding author)2. Zhen Hou#, Wenhui Wang#, Qianwen Chen, Yikang Yu, Xixia Zhao, Min Tang, Yiyi Zheng, and Zewei Quan, “Hybrid Protective Layer for Stable Sodium Metal Anode at High Utilization”, ACS Applied Materials & Interfaces 11 (2019) 37693-37700 (JCR-Q1, IF=8.456)3. Jiaolong Zhang, Wenhui Wang*, Wei Wang, Shuwei Wang, and Baohua Li*, “A comprehensive review of P2-type Na2/3Ni1/3Mn2/3O2: a potential cathode towards practical application of Na-ion batteries”, ACS Applied Materials & Interfaces 11 (2019) 22051-22066 (JCR-Q1, IF=8.456) 4. Jiaolong Zhang, Wenhui Wang*, Ruiying Shi, Wei Wang, Shuwei Wang, Feiyu Kang, and Baohua Li*, “Three-dimensional carbon felt host for stable sodium metal anode”, Carbon 155 (2019) 50-55 (JCR-Q1, IF=7.466)5. Xixia Zhao#, Wenhui Wang#, Zhen Hou, Yikang Yu, Qian Di, Xiaotong Wu, Guijuan Wei, Zewei Quan, and Jun Zhang, “Monodisperse solid tin and hollow tin oxide nanospheres for advanced anodes in lithium ion batteries”, Inorganic Chemistry Frontiers 6 (2019) 473-476 (JCR-Q1, IF=5.934) 6. Xixia Zhao#, Wenhui Wang#, Zhen Hou, Xiaokun Fan, Guijuan Wei, Yikang Yu, Qian Di, Yubin Liu, Zewei Quan, and Jun Zhang, “Yolk-shell nanostructured SnSe as a high-performance anode for Na-ion batteries”, Inorganic Chemistry Frontiers 6 (2019) 562-565 (JCR-Q1, IF=5.934)7. Wenhui Wang, Jiaolong Zhang, Baohua Li, and Liang Shi, “Electrochemical investigation of Sn-Co alloys as anode for sodium-ion battery”, Journal of Alloys and Compounds 780 (2019) 565-569 (JCR-Q1, IF=4.175)8. Jiaolong Zhang, Wenhui Wang*, and Baohua Li, “Effect of particle size on the sodium storage performance of Sn4P3”, Journal of Alloys and Compounds 771 (2019) 204-208 (JCR-Q1, IF=4.175)9. Zhen Hou#, Yikang Yu#, Wenhui Wang#, Xixia Zhao, Qian Di, Qianwen Chen, Wen Chen, Yulian Liu, and Zewei Quan, “Lithiophilic Ag nanoparticle layer on Cu current collector towards stable Li metal anode”, ACS Applied Materials & Interfaces 11 (2019) 8148-8154 (JCR-Q1, IF=8.456) 10. Jiaolong Zhang, Wenhui Wang*, and Baohua Li*, “Sn4P3/TiC composites as Li-ion battery anode with high volumetric capacity and good rate capability”, Energy Technology 2019: 1900371 (JCR-Q2, IF=3.163)11. Xixia Zhao, Wenhui Wang, Zhen Hou, Guijuan Wei, Yikang Yu, Jun Zhang, and Zewei Quan, “SnP0.94 nanoplates/graphene oxide composite for novel potassium-ion battery anode”, Chemical Engineering Journal 370 (2019) 677-683 (JCR-Q1, IF=8.355)12. Liang Shi, and Wenhui Wang, “Submicron-sized Sb2O3 with hierarchical structure as high-performance anodes for Na-ion storage”, International Journal of Energy Research 2019: 1-5 (JCR-Q1, IF=3.343)13. Lingfei Zhao, Wenhui Wang, Xixia Zhao, Zhen Hou, Xiaokun Fan, Yulian Liu, and Zewei Quan, “Ni3N Nanocrystals Decorated Reduced Graphene Oxide with High Ionic Conductivity for Stable Lithium Metal Anode”, ACS Applied Energy Materials 2019 (2) 2692-269814. Yikang Yu, Wei Huang, Xing Song, Wenhui Wang, Zhen Hou, Xixia Zhao, Kerong Deng, Huanxin Ju, Yugang Sun, Yusheng Zhao, Yi-Chun Lu, and Zewei Quan, “Thermally reduced graphene paper with fast Li ion diffusion for stable Li metal anode”, Electrochimica Acta 294 (2019) 413-422 (JCR-Q1, IF=5.383) 15. Yikang Yu, Zhuoyue Wang, Zhen Hou, Wurui Ta, Wenhui Wang, Xixia Zhao, Qian Li, Yusheng Zhao, Qiangqiang Zhang, and Zewei Quan, “3D Printing of Hierarchical Graphene Lattice for Advanced Na Metal Anodes”, ACS Applied Energy Materials 2 (2019) 3869-387720201. Zhen Hou#, Wenhui Wang#, Yikang Yu, Xixia Zhao, Qianwen Chen, Lingfei Zhao, Qian Di, Huanxin Ju, and Zewei Quan, “Poly(vinylidene difluoride) coating on Cu current collector for high-performance Na metal anode”, Energy Storage Materials 24 (2020) 588-593 (CiteScore = 15.09) 2. Songying Qu, Wenhui Wang*, Xingyu Pan, and Chaolin Li*, “Improving the Fenton catalytic performance of FeOCl using an electron mediator”, Journal of Hazardous Materials 384 (2020) 121494 (JCR-Q1, IF=7.65)3. Zhen Hou, Jiaolong Zhang, Wenhui Wang*, Qianwen Chen, Baohua Li, and Chaolin Li*, “Towards high-performance lithium metal anodes via the modification of solid electrolyte interphases”, Journal of Energy Chemistry 45 (2020) 7-17 (JCR-Q1, IF=5.162) 会议论文及发表演说1. Wang Wenhui, and Quan Li, “Developing Cycle-Stable Sn-Based Alloys for Anode Application in Na-Ion Batteries”, 231st ECS meeting, New Orleans, USA, May 2017, Oral Presentation 2. Wang Wenhui, and Quan Li, “Towards stable Sn anode for Na-ion batteries via the selection of effective binder and electrolyte salt”, The 18th national conference on electrochemistry, Harbin, China, August 2015, Oral Presentation3. Wang Wenhui, et al., “Effect of partial substitution for lithium vanadium phosphate in Li site and V site on its discharge plateau”, The 5th national conference of undergraduate on innovation and entrepreneurship, Beijing, China, November 2012, Student Representative of Harbin Institute of Technology标签: 哈尔滨工业大学(深圳) 土木与环境工程学院
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