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个人简介

李贵生教授,博士生导师,上海理工大学材料与化学学院主持工作副院长,上海师范大学环境与地理科学学院兼职教授,主要从事环境催化研究工作,基于光/光电环境催化绿色技术,对环境污染物(水和气)进行控制处理与资源化,实现有机污染物深度矿化与分解水制氢、CO2还原制备燃料等的协同研究。以通讯或第一作者身份在环境与能源各类重要国际SCI期刊上发表了近70余篇高质量论文,包括Environ. Sci. Technol. (3篇,IF = 9.028),Environ. Sci: Nano (1篇,IF = 8.131),Nano Energy (1篇, IF = 17.881),Adv. Func. Mater. (3篇, IF = 18.808),Appl. Catal. B-Environ. (13篇,IF = 19.503),Chem. Eng. J. (1篇,IF =13.273), Chem. Mater. (1篇,IF = 9.811),ACS Appl. Mater. Interfaces (6篇,IF = 9.229)等,其中有11篇论文入选全球引用前1%ESI高被引论文,1篇论文1‰ ESI热点论文,被同行他引用达5400余次,h-因子为40。目前完成及主持国家自然科学基金青年、面上项目共计4项,获得中国专利授权20项。参加工作以来。在人才培养方面也取得显著成绩,共计培养20名硕士研究生,多人次获研究生国家奖学金,1人获上海市优秀硕士论文成果奖,其中多人赴海外攻读博士学位(香港大学2人、日本大阪大学1人、日本早稻田大学1人、东京大学1人,京都大学1人,韩国浦项大学1人),目前多名毕业生进入国内高校担任教职。

研究领域

1)光/光电催化绿色技术对大气环境和水体环境污染物控制处理与资源化 2)光/光电催化还原 CO2制备燃料分子 3)光催化燃料电池新技术的开发与应用

近期论文

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W.C. Wang, Y. Tao, J.C. Fan, Z.P. Yan, H. Shang, D. L. Phillips, M. Chen, G.S. Li*, Fullerene–Graphene Acceptor Drives Ultrafast Carrier Dynamics for Sustainable CdS Photocatalytic Hydrogen Evolution,Adv. Funct. Mater. 2022, 2201357. (IF = 18.808,材料类一区) Y. Zhang, D.L. Pan, Y. Tao, H. Shang, D.Q. Zhang, G.L. Li*, H.X. Li, Photoelectrocatalytic Reduction of CO2 to Syngas via SnOx-Enhanced Cu2O Nanowires Photocathodes, Adv. Funct. Mater.2022, 2109600. (IF = 18.808,材料类一区) Y.N. Liu, Q. Li, Z.C. Lian, J.C. Fan*, Y. Tao, G.S. Li*, H.X. Li, Polarization field Promoted Photoelectrocatalysis for Synergistic Environmental remediation and H2 Production, Chem. Eng. J. 2022, 437, 135132. (IF =13.273,环境工程类一区) M.W. Xiong,#* Y. Tao,# Z.S. Zhao, Q. Zhu, X.Q. Jin, S.Q. Zhang, M. Chen, G.S. Li*, Porous g-C3N4/TiO2 Foam Photocatalytic Filter for Treating NO Indoor Gas, Environ. Sci. Nano, 2021,8, 1571-1579. (IF = 8.131, 环境类一区) W.C. Wang, Y. Tao, L. Du, Z. Wei, Z. Yan, W. Chan, Z.C. Lian*, R.X. Zhu*, D. L. Phillips*, G.S. Li*, Femtosecond Time-resolved Spectroscopic Observation of Long-lived Charge Separation in Bimetallic Sulfide/g-C3N4 for Boosting Photocatalytic H2 Evolution, Appl. Catal. B Environ.2021, 282, 119568(IF = 19.503, 环境工程类一区,ESI高被引论文,引用35次) J. Mei, Y. Tao, C. Gao, Q. Zhu, H.Y. Zhang, J. Yu, Z. Fang, H. Xu*, Y.H. Wang*, G.S. Li*, Photo-induced Dye-Sensitized BiPO4/BiOCl System for Stably Treating Persistent Organic Pollutants, Appl. Catal. B Environ.2021, 285, 119841. (IF = 19.503, 环境工程类一区,引用13次) Z. Lian,Y. Tao, Y. Liu, Y. Zhang, Q. Zhu, G.S. Li*, H. Li*, Efficient Self-Driving Photoelectrocatalytic Reactor for Synergistic Water Purification and H2 Evolution, ACS Appl. Mater. Interfaces2020, 12, 40, 44731-44742. (IF = 9.229,引用7次) W.R. Dai, Y. Tao, H.J. Zou, S.N. Xiao, G.S. Li, Dieqing Zhang*, and Hexing Li, Gas-Phase Photoelectrocatalytic Oxidation of NO via TiO2 Nanorod Array/FTO Photoanodes, Environ. Sci. Technol.2020, 54, 9, 5902-5912. (IF = 9.028, 环境类一区, 引用16次) S. Zhu, X.F. Chen*, Z.C. Li, X.Y. Ye, Y. Liu, Y. Chen, L. Yang, M. Chen, D.Q. Zhang, G.S. Li*, H.X. Li, Cooperation between inside and outside of TiO2: Lattice Cu+ Accelerates Carrier Migration to the Surface of Metal Copper for Photocatalytic CO2 Reduction, Appl. Catal. B Environ.2020, 264, 118515. (IF = 19.503, 环境工程类一区,引用46次) Y. Liu, D.L. Pan, M.W. Xiong, Y. Tao, X. Chen, D.Q. Zhang, Y. Huang, G.S. Li*, In-situ Fabrication SnO2/SnS2 Heterostructure for Boosting the Photocatalytic Degradation of Pollutants, Chin. J. Catal.2020, 41, 10, 1554-1563. (IF = 8.271, 国产TOP期刊,引用12次) D.L. Pan, S.N. Xiao, X.F. Chen, R.P. Li, Y.N. Cao, D.Q. Zhang*, S.S. Pu, Z.C. Li, G.S. Li*, H.X. Li*, Efficient Photocatalytic Fuel Cell via Simultaneous Visible-Photoelectrocatalytic Degradation and Electricity Generation on a Porous Coral-like WO3/W Photoelectrode, Environ. Sci. Technol.2019, 53 (7), 3697-3706. (IF = 9.028, 环境类一区,ESI高被引论文,引用59次) W.C. Wang, S. Zhu, Y.N. Cao, Y. Tao, X. Li, D.L. Pan, D.L. Phillips, D.Q. Zhang, M.Chen, G.S. Li*, H.X. Li, Edge-Enriched Ultrathin MoS2 Embedded Yolk‐Shell TiO2 with Boosted Charge Transfer for Superior Photocatalytic H2 Evolution, Adv. Funct. Mater.2019, 29(36), 1901958. (IF = 18.808,材料类一区,引用87次) X.J. Wang, X.L. Zhao, D.Q. Zhang, G.S. Li*, H.X. Li*, Microwave Irradiation induced UIO-66-NH2 Anchored on Graphene with High Activity for Photocatalytic Reduction of CO2, Appl. Catal. B-Environ.2018, 228: 47-53. (IF = 19.503, ESI高被引论文,引用115次) G.S. Li*, Z.C. Lian, W.C. Wang, D.Q. Zhang, H.X. Li*, Nanotube- Confinement induced Size-Controllable g-C3N4 Quantum Dots Modified Single-crystalline TiO2 Nanotube Arrays for Stable Synergetic Photoelectrocatalysis, Nano Energy, 2016, 19, 446-454 (IF = 17.881, ESI高被引论文,引用261次) G.S. Li*, D.Q. Zhang, J.C. Yu, M.K.H. Leung, “An Efficient Bismuth Tungstate Visible-Light-Driven Photocatalyst for Breaking Down Nitric Oxide”, Environ. Sci. Technol. 2010, 44, 4276-4281. (IF = 9.028, 环境类一区,引用156次) G.S. Li, D.Q. Zhang, J.C. Yu, “A New Visible-Light Photocatalyst: CdS Quantum Dots Embedded Mesoporous TiO2”, Environ. Sci. Technol. 2009, 43, 7079-7085. (IF = 9.028, 环境类一区,引用384次)

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