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个人简介

教育经历 2011.09-2017.06 中国科学技术大学 环境工程 博士 2007.09-2011.06 哈尔滨工业大学 给排水科学与工程 学士 工作经历 2019.12至今 华东师范大学 生态与环境科学学院 研究员 2017.07-2019.11 同济大学 化学科学与工程学院 博士后 荣誉及奖励 2021年全国大学生市政环境类创新实践能力大赛-第三届“北控水务杯”团体三等奖 (指导老师) 2022年“六百光年杯”第十五届全国大学生节能减排社会实践与科技竞赛 三等奖 项目“三维电-生物低能耗焦化废水处理系统” (指导老师) 2022年全国大学生市政环境类创新实践能力大赛-第四届“北控水务杯”团体二等奖 (指导老师)

研究领域

水污染控制 钛基光电催化电极的合成及其用于难降解有机污染物的研究 电芬顿材料的合成及其催化降解污染物的机理研究

近期论文

查看导师最新文章 (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)

M.M. Wang, P.X. Liu, F. Ye, L.J. Liu, J.T. Wen, B.J. Ni, H.W. Luo, W.K. Wang,* J. Xu,* 2D Ni-Co bimetallic oxide nanosheets activate persulfate for targeted conversion of bisphenol A in wastewater into polymers. Environment International. (2024) 184, 108466. W.K. Wang, L.L. Zhou, H.Y. Cao, P.X. Liu, X.Y. Li, M. Fujitsuka, J. Xu,* T. Majima,* Self-interspersed mesoporous nanoplates assembled WO3 boosts photoelectrocatalytic pollutants degradation:Enhancing separation and transfer of hole/electron pairs. Applied Surface Science, (2023) 618, 156686. H.S. Meng, S.Z. He, M.M. Wang, J.R. Xi,J.T. Wen, H.W. Luo, W.K. Wang,* J. Xu,* Selective pollutant degradation with a novel persulfate activation cell resistant to environmental interference. Chemical Engineering Journal. (2023) 470, 144191. M.M. Wang, Y.K. Cui, J.T. Wen, Y.S. Wang, M.H. Jia, S.Z. He, W.K. Wang,* J. Xu,* Flexible regulation of persulfate activation mechanisms through tuning Cu valence in CuBTC-derived copper oxide catalysts for improved pollutant degradation. Chemical Engineering Journal. (2023) 476, 146565. Y.S. Wang, T.R. Huo, Y. Wang, J.W. Bai, P.P. Huang, C. Li, S.Y. Deng, H. Mei, J. Qian, X.C. Zhang, C. Ding, Q.Y. Zhang, W.K. Wang,* Constructing meoporous biochar derived from waste carton: Improving multi-site adsorption of dye wastwater and investigating mechanism. Environmental Research. (2024) 242, 117775. M.M. Wang, L.J. Liu, J.T. Wen, Y. Ding, J.R. Xi, J.C. Li, F.Z. Lu, W.K. Wang,* J. Xu,* Multimetallic CuCoNi oxide nanowires in situ grown on a nickel foam substrate catalyze persulfate activation via mediating electron transfer. Environmental Science & Technology, (2022) 56, 17, 12613-12624. M.M. Wang, L.J. Liu,J.R. Xi,Y. Ding, P.X. Liu, Y. Ding, L. Mao, B.J. Ni, W.K. Wang,* J. Xu,* Lattice doping of Zn bootsts oxygen vacancies in Co3O4 nanocages: Improving presulfate activation via forming surface-activated complex. Chemical Engineering Journal, (2023) 451, 138605. C. Chen, L.L. Zhou, Y.N. Huang, W.K. Wang,* J. Xu,* Boron regulates catalytic sites of biochar to enhance the formation of surface-confined complex for improved peroxydisulfate activation. Chemosphere, (2022) 301, 134690. Y.S. Wang, S.Q. Luo, X.Y. Li, Z.X. Li, P.P. Huang, L.L. Zhou, S.Q. Zhang, K.H. Miao, W.R. Zhi, S.Y. Deng, T.R. Huo, Q.Y. Zhang, W.K. Wang,* Insights into the highly efficient treatment of dyeing wastewater using algal bloom derived activated carbon with wide-range adaptability to solution pH and temperature. Bioresource Technology, (2022) 349, 126883. L.L. Zhou, P.X. Liu, Y. Ding, J.R. Xi, L.J. Liu, W.K. Wang,* J. Xu,* Hierarchically porous structure of two-dimensional nano-flakes assembled flower-like NiO promotes the formation of surface-activated complex during persulfate activation. Chemical Engineering Journal, (2021) 430, 133134. Z.M. Wang, W.K. Wang,# S.Y. Liu, N.J. Yang, G.H. Zhao, Coupling rotating disk electrodes and surface-enhanced Raman spectroscopy for in situ electrochemistry studies. Electrochemistry Communications (2021) 124, 106928. M. Gao,# W.K. Wang,#Y.M. Zheng, Q.B. Zhao, H.Q. Yu,* Hierarchically porous biochar for supercapacitor and electrochemical H2O2 production. Chemical Engineering Journal, (2020) 402, 126171. W. K. Wang, J.J. Chen, Z.Z. Lou, S. Kim, M. Fujitsuka,* H.Q. Yu,* T. Majima,* Single-molecule and -particle probing crystal edge/corner as highly efficient photocatalytic sites on a single TiO2 particle, Proceedings of the National Academy of Sciencesof the United States of America, 116 (2019) 18827-18833. W.K. Wang, B. Tang, J. Liu, H.J. Shi, Q.J. Xu, G.H. Zhao,* Self-supported microbial carbon aerogel bioelectrocatalytic anode promoting extracellular electron transfer for efficient hydrogen evolution. Electrochimica Acta, 303 (2019) 268-274. W.K. Wang, W. Zhu, L. Mao, J. Zhang, Z. Zhou, G. Zhao, Two-dimensional TiO2-g-C3N4 with both Ti-N and C-O bridges with excellent conductivity for synergistic photoelectrocatalytic degradation of bisphenol A, Journal of Colloid and Interface Science, 557 (2019) 227-235. M. Gao,# W.K. Wang,#X. Zhang, J. Jiang, H.Q. Yu.* Fabrication of metallic nickel-cobalt phosphide hollow microspheres for high-rate supercapacitors. Journal of Physical Chemistry C, 2018, 122(44): 25174-25182. W.K. Wang, M. Gao, X. Zhang, M. Fujitsuka, T. Majima,* H.Q. Yu,* One-step synthesis of nonstoichiometric TiO2 with designed (101) facets for enhanced photocatalytic H2 evolution. Applied Catalysis B-Environmental,2017, 205: 165-172. W.K. Wang, J.J. Chen, M. Gao, Y.X. Huang, X. Zhang, H.Q. Yu,* Photocatalytic degradation of atrazine by boron-doped TiO2 with a tunable rutile/anatase ratio. Applied Catalysis B-Environmental,2016, 195: 69-76. W.K. Wang, J.J. Chen, X. Zhang, Y.X. Huang, W.W. Li, H.Q. Yu,* Self-induced synthesis of phase-junction TiO2 with a tailored rutile to anatase ratio below phase transition temperature, Scientific Reports, 2016, 6(3): 20491. A.Y. Zhang,# W.K. Wang,#D.N. Pei, H.Q. Yu,* Degradation of refractory pollutants under solar light irradiation by a robust and self-protected ZnO/CdS/TiO2 hybrid photocatalyst. Water Research, 2016, 92: 78-86. W.K. Wang, J.J. Chen, W.W. Li, D.N. Pei, X. Zhang, H.Q. Yu,* Synthesis of Pt-loaded self-interspersed anatase TiO2 with a large fraction of (001) facets for efficient photocatalytic nitrobenzene degradation, ACS Applied Materials & Interfaces, 2015, 7: 20349-20359 J.J. Chen,# W.K. Wang,# W.W. Li, D.N. Pei, H.Q. Yu,* Roles of crystal surface in Pt-loaded titania for photocatalytic conversion of organic pollutants: A first-principle theoretical calculation. ACS Applied Materials & Interfaces, 2015, 7: 12671-12678.

学术兼职

2022.01-2025.06 <> 青年编委会委员

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