姓名:李微雪
职称:教授
单位:中国科学技术大学
邮箱:wxli70@ustc.edu.cn

从事理论与计算催化基础研究。国家杰出青年基金、中国青年催化奖获得者,2021年度、2024年度中国科学技术大学杰出研究校长奖获得者。国家自然科学基金委创新研究群体《催化剂的活性和稳定性设计基础》项目负责人。发表SCI论文190余篇, 包括Science(3篇)、Nature Catalysis(3篇)等。重要研究成果:(1) 提出了金属-载体相互作用调控催化剂稳定性的Sabatier原理:发展了反应条件下催化剂生长动力学理论,建立了金属-载体相互作用既不能太强、也不能太弱的调控理论和稳定性火山图;针对高分散催化剂、高温催化反应、化学稳定性差等挑战,提出双功能载体设计理论,打破标度率限制、超越催化剂塔曼温度约束,被广泛用来指导高效催化剂体系设计(Science 2021)。 (2) 揭示了金属-载体相互作用的本质:通过可解释性AI 分析大量实验数据,建立了可推导、物理清晰、数值准确的“金属-载体相互作用”控制方程;首次揭示了金属-金属键的决定性影响,结合分子动力学模拟,提出了“强金属-金属作用原理性判据”,解释阐释了几乎所有的界面包覆实验现象;该理论具有普适性,可推广描述各种界面体系的相互作用,为推动AI与化学研究的深度融合与创新提供了新视角和可能路线(Science 2024)。
1. T. R. Wang, J. Y. Hu, R. H. Ouyang, Y. T. Wang, Y. Huang, S. L. Hu, W. X. Li*;Nature of Metal-Support Interaction for Metal Catalysts on Oxide Supports; Science 386 (2024) 915–920;
2. S. L. Hu, W. X. Li*; Sabatier principle of metal-support interaction for design of ultrastable metal nanocatalysts;Science 374 (2021) 1360-1365;;
3. Q. Fu#, W. X. Li# , Y. X. Yao, H. Y. Liu, H. Y. Su, D. Ma, X. K. Gu, L. M. Chen, Z. Wang, H. Zhang, B. Wang, X. H. Bao*; Interface confined ferrous centers for catalytic oxidation;Science 328 (2010) 1141-1144;
4. S. L. Hu, W. X. Li*;A Data-driven Leap Towards Stable Catalysts; Nat. Catal. 8 (2025) 981-983 ;
5. J. Luo, J. Y. Yang, C. W. Zhu, Y. Hang, J. X. Liu, W. X. Li*;Strong Metal‒Metal Interaction-induced Encapsulation of Cobalt by Lanthanum Nitride for Efficient Ammonia Synthesis;J. Am. Chem. Soc. (2026);
6. J. L. Chen, H. Y. Wang, C. L. Ruan, J. X. Liu*, W. X. Li*;Orchestrating Structure and Chemistry Dynamics for Cluster Catalysis;Natl. Sci. Rev. (2026) nwag072 ;
7. L. Feng, J. W. Zhao, W. Y. Wei, H. Y. Wang, Y. Q. Jiang, J. X. Liu*, W. X. Li*;Nature of Reverse Water–Gas Shift Reactions at Metal–Oxide Interfaces Uncovered via Interpretable Machine Learning;J. Am. Chem. Soc. 148 (2026) 3602-3613;
8. J. L. Chen, X. C. Jiang, L. Feng, J. Z. Zhu, J. W. Zhao, J. X. Liu*, W. X. Li*; Collectivity Effect in Cluster Catalysis under Operational Conditions;Nat. Commun. 16 (2025) 9144;
9. W. Shu, J. C. Li, J. X. Liu, C. W. Zhu, T. R. Wang, L. Feng, R. H. Ouyang*, W. X. Li*; Structure Sensitivity of Metal Catalysts Revealed by Interpretable Machine Learning and First-principles Calculations;J. Am. Chem. Soc. 146 (2024) 8737-8745;
10. J. W. Zhao, H. Y. Wang, L. Feng, J. Z. Zhu, J. X. Liu*, W. X. Li*; Crystal-phase Engineering in Heterogeneous Catalysis; Chem. Rev. 124 (2024) 164-209;
11. C. W. Zhu, W. L. Xu, F. Liu, J. Luo, J. L. Lu*, W. X. Li*;Molecule Saturation Boosts Acetylene Semihydrogenation Activity and Selectivity on a Core-Shell Ruthenium@Palladium Catalyst;Angew. Chem. Int. Ed 62 (2023) e202300110.
