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个人信息Personal Information
教授
博士生导师
硕士生导师
性别:女
毕业院校:大连理工大学
学位:博士
所在单位:化学学院
学科:物理化学. 化学工程
办公地点:知化楼C201
电子邮箱:chuanshi@dlut.edu.cn
个人简介Personal Profile
石川,大连理工大学化学学院教授、博士生导师,辽宁省学科评议组成员,大连理工大学第九届校学术委员会委员,化学学院学术分委员会主任委员。2001年于大连理工大学获得应用化学博士学位,2002–2003年在香港浸会大学从事博士后研究。曾于2010年在美国肯塔基大学应用能源研究所、2017年在美国伊利诺伊大学香槟分校进行访问研究。2004年起在大连理工大学任教。长期围绕国家能源与环境领域重大需求,致力于氢气制取以及水、二氧化碳、低碳烷烃等小分子的催化活化与转化,以及VOCs和NOₓ等污染物的高效催化去除。重点开展新型碳/氮化物及复合结构催化材料的精准合成,发展“单原子”“原位封装”“点击锚定”等先进合成策略,构建纳米多级结构,探索其在催化反应中的结构-性能关系;提出非平衡等离子体与催化剂在纳米尺度下的协同机制,有效突破低温催化转化的热力学和动力学限制。先后入选教育部“新世纪优秀人才支持计划”(2007)、“化工与材料京博博士论文奖”(优秀指导教师,2019)、“长江学者奖励计划”特聘教授(2021),获评“大连市最美科技工作者”(2022)、辽宁省百千万人才工程百人层次人才等,2017年“实现氢气的低温制备和存储”入选中国科学十大进展;已发表SCI论文150余篇,总被引9000余次,h因子48,研究成果发表于Science、Nature、Chem、ACS Catalysis等国际高水平期刊,多次被Chemistry World、C&EN、新华社、央视网等国内外媒体报道。作为主要完成人的项目“碳化钼催化剂上水的低温活化和制氢过程”,获国家自然科学奖二等奖(2024),教育部高等学校科学研究优秀成果(自然科学奖)一等奖(2023)。
团队主页:http://team.dlut.edu.cn/denglizticuihua/zh_CN/index.htm
【代表性论文】
[1] X. Zhang, M. Zhang, Y. Deng, M. Xu, L. Artiglia, W. Wen, R. Gao, B. Chen, S. Yao, X. Zhang, M. Peng, J. Yan, A. Li, Z. Jiang, X. Gao, S. Cao, C. Yang, A.J. Kropf, J. Shi, J. Xie, M. Bi, J.A. van Bokhoven, Y.-W. Li, X. Wen, M. Flytzani-Stephanopoulos, C. Shi*, W. Zhou*, D. Ma*, A stable low-temperature H2-production catalyst by crowding Pt on α-MoC, Nature, 2021, 589, 396-401. (IF=64.8)
[2] S. Yao, X. Zhang, W. Zhou, R. Gao, W. Xu, Y. Ye, L. Lin, X. Wen, P. Liu, B. Chen, E. Crumlin, J. Guo, Z. Zuo, W. Li, J. Xie, L. Lu, C.J. Kiely, L. Gu, C. Shi*, J.A. Rodriguez*, D. Ma*, Atomic-layered Au clusters on α-MoC as catalysts for the low-temperature water-gas shift reaction, Science, 2017, 357, 389. (IF=56.9)
[3] L. Lin, W. Zhou, R. Gao, S. Yao, X. Zhang, W. Xu, S. Zheng, Z. Jiang, Q. Yu, Y.W. Li, C. Shi*, X.D. Wen*, D. Ma*, Low-temperature hydrogen production from water and methanol using Pt/α-MoC catalysts, Nature, 2017, 544, 80-83. (IF=64.8)
[4] M. Zhang, Y. Zhu, J. Yan, J. Xie, T. Yu, M. Peng, J. Zhao, Y. Xu, A. Li, C. Jia, L. He, M. Wang, W. Zhou*, R. Wang*, H. Jiang*, C. Shi*, J. Rodriguez*, D. Ma*, “A Highly Active Molybdenum Carbide Catalyst with Dynamic Carbon Flux for Reverse Water-Gas Shift Reaction”. Angew. Chem., Int. Ed. 2025, 64 (6), e202418645.(IF=16.9)
[5] X. Zhang, Y. Xu, Y. Liu, L. Niu, Y. Diao, Z. Gao, B. Chen, J. Xie, M. Bi, M. Wang, D. Xiao, D. Ma*, C. Shi*, A novel Ni-MoCxOy interfacial catalyst for syngas production via the chemical looping dry reforming of methane, Chem, 2023, 9, 102-116. (IF=23.5)
[6] X. Zhang, Y. Liu, M. Zhang, T. Yu, B. Chen, Y. Xu, M. Crocker, X. Zhu, Y. Zhu, R. Wang, D. Xiao, M. Bi, D. Ma*, C. Shi*, Synergy between β-Mo2C Nanorods and Non-thermal Plasma for Selective CO2 Reduction to CO, Chem, 2020, 6, 3312-3328. (IF=23.5)
[7] P. Mao, H. Cai, X. Liu, S. Ren, Z. Sun, Y. Jing, Y. Wang, B. Chen and C. Shi, Self-Cleaning Copper Nanorods via Periodic Valence Transitions: Overcoming Formate Accumulation for Industrial-Grade Formaldehyde Electrooxidation, Adv. Funct. Mater., 2025, e17824.
[8] Z. Wang, Q. Zhao, M. Tan, D. Qu, B. Chen and C. Shi*, Manganese migration to regulate copper sites in Cu-SSZ-13 for enhanced low-temperature SCR of NOx, Appl. Catal., B, 2025, 367, 125107. (IF=22.1)
[9] B. Sun, S. Mu, B. Chen, G. Hu, R. Gao and C. Shi*, Hydrogen production via ammonia decomposition on molybdenum carbide catalysts: Exploring the Mo/C ratio and phase transition dynamics, Chinese J Catal, 2025, 74, 365-376.(IF=17.7)
[10] L. Zhang, Z. Wang, D. Liu, Z. Hao, Q. Zhao, B. Chen*, C. Shi*, Smart and responsive zeolite catalysts for toluene “storage-oxidation” cycling removal, Appl. Catal., B, 2024, 344, 123625. (IF=22.1)
[11] L. Wang, H. Wang, H. Huang, T. Yun, C. Song*, C. Shi*, Transition Metal Carbides: Emerging CO2 Hydrogenation Catalysts, from Recent Advance to Future Exploration, Adv. Funct. Mater., 2024, 34, 2309850. (IF=19)
[12] Y. Diao, H. Wang, B. Chen, X. Zhang*, C Shi*, Modulating Morphology and Textural Properties of Al2O3 for Supported Ni Catalysts Toward Plasma-assisted Dry Reforming of Methane, Appl. Catal., B, 2023, 330, 122573. (IF=22.1)
[13] Y. Diao, X. Zhang, Y. Liu, B. Chen, G. Wu, C. Shi*, Plasma-assisted dry reforming of methane over Mo2C-Ni/Al2O3 catalysts: Effects of β-Mo2C promoter., Appl. Catal., B, 2022, 301, 120779. (IF=22.1)
[14] Y. Liu, Y. Chen, Z. Gao, X. Zhang, L. Zhang, M. Wang, B. Chen, Y. Diao, Y. Li, D. Xiao, X. Wang*, D. Ma*, C. Shi*, Embedding high loading and uniform Ni nanoparticles into silicalite-1 zeolite for dry reforming of methane, Appl. Catal., B, 2022, 307, 121202. (IF=22.1)
[15] H. Wang, Y. Diao, Z. Gao, K. Smith, X. Guo*, D. Ma*, C. Shi*, H2 Production from Methane Reforming over Molybdenum Carbide Catalysts: From Surface Properties and Reaction Mechanism to Catalyst Development, ACS Catal., 2022, 12, 15501. (IF=12.9)
热忱欢迎有志于能源催化、环境催化、电催化等研究方向,能够坚持刻苦学习、勇于创新、积极进取的同学到本课题组攻读硕士、博士学位,课题组将竭尽全力为你创造良好的科研条件。同时欢迎优秀博士毕业生来组从事博士后研究工作,条件优厚。
有意加入本课题组的学生,欢迎与我联系:chuanshi@dlut.edu.cn.
