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教育经历:
(1) 1993-09 至 1996-07, 南开大学, 物理化学, 博士
(2) 1990-09 至 1993-07, 郑州大学, 物理化学, 硕士
(3) 1983-09 至 1987-07, 信阳师范学院, 化学, 学士
博士后工作经历:
(1) 2002-09 至 2004-09, 日本筑波大学
(2) 1996-09 至 1998-07, 中国科学院山西煤炭化学研究所
科研与学术工作经历(博士后工作经历除外):
(1) 2005-09 至 今, 南开大学, 化学学院, 研究员
(2) 1998-09 至 2005-09, 南开大学, 化学学院, 副教授
国家自然科学基金委员会, 面上项目, 22173049, 水煤气变换反应铜催化剂活性中心的分子模拟,
2022-01-01 至 2025-12-31, 60万元, 在研, 主持
国家自然科学基金委员会, 面上项目, 21973048, 负载型过渡金属催化甲烷干气重整反应积碳行为的
第一性原理研究, 2020-01-01 至 2023-12-31, 65万元, 结题, 主持
(1) Yan-Xin Wang; Gui-Chang Wang ; A Systematic Theoretical Study of Water Gas Shift Reaction on Cu(111) and Cu(110): Potassium Effect, ACS Catalysis, 2019, 9: 2261-2274
(2) Meng-Ru Li; Yang-Yang Song; Gui-Chang Wang ; The Mechanism of Steam-Ethanol Reforming on
Co13/CeO2−x: A DFT Study, ACS Catalysis, 2019, 9: 2355-2367
(3) Hong-Yan Ma; Gui-Chang Wang ; Selective Hydrogenation of Acetylene on Ptn/TiO2 (n = 1, 2, 4, 8) Surfaces: Structure Sensitivity Analysis, ACS Catalysis, 2020, 10: 4922-4928
(4) Jingyu Sun; Jinghong Wen; Guizhu Wu; Ze Zhang; Xue Chen; Guichang Wang; Mingyang Liu ; Harmonizing the Electronic Structures on BiOI with Active Oxygen Vacancies toward Facet-Dependent Antibacterial Photodynamic Therapy, Adv. Funct. Mater., 2020, 30: 2004108
(5) Xue Chen, Jing-Hong Wen, Kim Jong Guk, Gui-Zhu Wu,Ze Zhang, Gui-Chang Wang, Ming-Yang Liu, Shu-Hong Yu,Enzyme-like antibacterial activities of Cu9S5 nanoflowers with vacancy- type dependence,Cell Reports Physical Science 2, 100456, June 23, 2021.
(6) Peng-Fei Qu, Gui-Chang Wang, Theoretical insight into the strong size-dependence of dry reforming of
methane over Ru/CeO2,Journal of CO2 Utilization 65 (2022) 102221.
(7) Jiang-Wei, An, Gui-Chang Wang, Coordination-number-determined activity of copper catalyst in water-gas
shift reaction, Fuel 343 (2023) 127850.
(8) Gui-Chang Wang,A systematic theoretical study the active sites of potassium promoter on the activity of water-gas shift reaction over Pt(111) ,Applied Surface Science 611 (2023) 155638
(9) Hui Jiao; Gui-Chang Wang ; Dry Reforming of Methane on Ni/LaZrO2 Catalyst under External Electric Fields: A Combined First-Principles and Microkinetic Modeling Study, ACS Appl. Mater. Interfaces, 2024, 16: 35166-35178
(10) Peng-Fei Qu, Gui-Chang Wang, A Comprehensive Mechanistic Study for Dry Reforming of Methane over CeO2‑Supported TM4 clusters (TM = Ru, Pt, Co, Ni), ACS Appl. Mater. Interfaces 2024, 16, 48, 66052–66065
(11) Gui-Chang Wang, Active-Site Ensemble for the Reverse Water-Gas Shift Reaction over Pd/TiO2: Two Is Better than One or More, ACS Appl. Mater. Interfaces 2025, 17, 7, 11236–11247
(12) Hui Jiao; Gui-Chang Wang, A Comprehensive Theoretical Study of the Mechanism for Dry Reforming of Methane on a Ni4/ZrO2(101) Catalyst Under External Electric Fields: The Role of Interface and Oxygen Vacancy, ACS Catal. 2025, 15, 3846−3859
(13) Yu-Bi Huang, Gui-Chang Wang, Water−Gas Shift Reaction over CuxO/Cu(111) (x < 2) from a DFTMKM-kMC Study, ACS Catal. 2025, 15, 4239−4250
(14) Zi-Qiao Xue, Gui-Chang Wang, KMC study on the promotion of the water–gas shift reaction by CO-induced clustering on Cu(111),
J. Catal. 4 47 (2025) 116115
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