李微雪,男,1970年生,中国科学院力学研究所博士,德国马普协会Fritz-Haber-Institute、丹麦Aarhus大学物理系博士后,
中国科学技术大学教授、
博士生导师,2024年度
中国化学会会士(FCCS)。
人物经历
2004.07-2015.06 中科院大连化学物理研究所,
催化基础国家重点实验室,理论催化课题组长,研究员
2002.08-2004.06 丹麦Aarhus大学物理系,博士后
1999.01-2002.07 德国马普协会Fritz-Haber-Institute,博士后
1995.09-1998.12 中国科学院力学研究所,博士
1992.09-1995.06 中国原子能研究院,硕士
1988.09-1992.06 武汉大学物理系,本科
学术职务
2023年12月,催化与理论化学安徽省基础学科研究中心主任。
2025年3月,当选2024年度中国化学会会士(FCCS)。
科研项目
2017-2020 基金委重大研究计划“碳基载能分子高效转化的理论计算研究”,负责人
2017-2021 中科院前沿科学重点项目“纳米催化的晶相和稳定性调控”,负责人
2016 万人计划领军人才,负责人
2017-2021 科技部重大研究计划“煤经合成气制高值化学品”,骨干
2018-2022 科技部重大研究计划 “基于机器学习势函数的纳米催化动态模拟与理性设计”,课题组长
获得荣誉
2016 中组部万人计划领军人才
2014 科技部“中青年科技创新领军人才”
2014 化学会催化专业委员会“中国青年催化奖”
2014 中科院“朱李月华”优秀教师奖
2013 大连市领军人才
2013 辽宁省优秀硕士生导师
2012 大连化物所“科技创新奖”
2012 基金委“杰出青年基金”
2009 大连化物所优秀博士后导师
2022 中国科大2021年度杰出研究校长奖
研究方向
1、催化和表界面化学的理论与计算研究
2、催化材料结构敏感性及其稳定性:材料晶相/行貌/尺寸/界面效应
3、催化反应选择性:合成气和甲醇化学/碳-氧键活化/碳-碳键形成
论文专著
1.Atomistic Theory of Ostwald Ripening and Disintegration of Supported Metal Particles under Reaction Conditions, R. H. Ouyang, J. X. Liu, W. X. Li, J. Am. Chem. Soc.
2.Crystallographic Dependence of CO Activation on Cobalt Catalysts: HCP versus FCC J. X. Liu, H. Y. Su, D. P. Sun, B. Y. Zhang, W. X. Li, J. Am. Chem. Soc.
3.Platinum-modulated Cobalt NanoCatalysts for Low Temperature Aqueous Phase Fischer-Tropsch Synthesis, H. Wang, W. Zhou, J. X. Liu, R. Si , G. Sun, M. Q. Zhong , H. Y. Su, H. B. Zhao, J. A. Rodriguez , S. J. Pennycook , J. C. Idrobo, W. X. Li, Y. Kou, D. Ma, J. Am. Chem. Soc.
4.Mechanistic Studies of Water Electrolysis and Hydrogen Electro-Oxidation on High Temperature Ceria-Based Solid Oxide Electrochemical Cells, C. J. Zhang, M. Grass, Y. Yu, C. Dejoie, W. C. Ding, K. Gaskell, N. Jabeen, Y. P. Hong, A. Shavorskiy, H. Bluhm, W. X. Li, G. Jackson, Z. Hussain, Z. Liu, B. Eichhorn, J. Am. Chem. Soc.
5.In-situ Oxidation Study of Pt(110) and its Interaction with CO ; D. R. Butcher, M. E. Grass, Z. H. Zeng, F. Aksoy, H. Bluhm, W. X. Li, B. S. Mun, G. A. Somorjai, Z. Liu, J. Am. Chem. Soc
6.Carbon Chain Growth via Formyl Insertion on Rh and Co Catalysts in Syngas Conversion; Y. H. Zhao, K. J. Sun, X. F. Ma, J. X. Liu, D. P. Sun, H. Y. Su, and W. X. Li; Angew. Chem. Int. Ed
7.Size-selective carbon nano-clusters as precursors to the growth of epitaxial graphene; B. Wang, X. F. Ma, M. Caffio, R. Schaub, and W. X. Li; Nano Lett.
8.Interface confined ferrous centers for catalytic oxidation; Q. Fu, W. X. Li, Y. X Yao, H. Y. Liu, H. Yan Su, D. Ma, X. K. Gu, L. M. Chen, Z. Wang, H. Zhang, B. Wang, X. H. Bao; Science
9.In Situ UV Raman Spectroscopic Study on the Synthesis Mechanism of AlPO-5; F. T Fan, Z. C. Feng, K. J. Sun, M. L. Guo, Q. Guo, Y. Song, W. X. Li, and C. Li; Angew. Chem
10.Experimental observation of quantum oscillation of surface chemical reactivities; X. Ma, P. Jiang, Y. Qi, J.F. Jia, Y. Yang, W.H. Duan, W. X. Li, X.H. Bao, S. B. Zhang, and Q.K. Xue; PNAS
11.Role of surface elastic relaxations in an O-induced nanopattern on Pt(110)-(1x2); S. Helveg, W. X. Li, N. C. Bartelt, S. Horch, E. Laegsgaard, B. Hammer and F.Besenbacher; Phys. Rev.
12.One-dimensional PtO2 Oxide at Pt Steps: formation and reaction with CO; J.G. Wang, W. X. Li, M. Borg, J. Gustafson, A. Mikkelsen, T. M. Pedersen, E. Lundgren, J.Weissenrieder, J. Klikovits, M. Schmid, B. Hammer, and J. N. Andersen; Phys. Rev
13.Two-step reaction on a strained, nanoscale segmented surface; C. Africh, F. Esch, W. X. Li, M. Corso, B. Hammer, R. Rosei, and G. Comelli; Phys. Rev. Lett
14.Oxidation of Pt(110); W. X. Li, L. Osterlund, E. K. Vestergaard, R.T. Vang, J. Matthiesen, T.M. Pedersen, E. L?gsgaard, B. Hammer, and F. Besenbacher ; Phys. Rev. Lett
15.Why is a noble metal catalytically active? The role of the O-Ag interaction in the function of silver as an oxidation catalyst; W. X. Li, C. Stampfl and M. Scheffler; Phys. Rev
16.The role of sub-surface oxygen in oxide formation at transition metal surfaces; M. Todorova, W. X. Li, M.V. Ganduglia-Pirovano, C. Stampfl, K. Reuter, and M. Scheffler; Phys. Rev
17.Nature of Metal-Support Interaction for Metal Catalysts on Oxide Supports
参考资料
李微雪.中国科学院大连化学物理研究所.2014-04-14