Yifeng Zhu

Physical Chemistry

Tenure track Professor

zhuyifeng@fudan.edu.cn

A3005 Chemistry Building, Department of Chemistry, Fudan University 2005 Songhu Road, Yangpu District, Shanghai 200438, China

https://faculty.fudan.edu.cn/zhuyifeng/zh_CN/index.htm

Research Interests

  • Catalytic chemistry of small molecules (CO, CH4, CO2 etc.)

  • Operando X-ray absorption and Infrared spectroscopies with time resolution for catalysis

  • Design of oxide surfaces and synthesis

  • Synthesis and design of supported clusters and single atoms

Academic Appointments

  • Youth editorial board member of Natural Gas Chemical Industry

Prizes and awards

  • 2020 Travel Award to the 17th International Congress on Catalysis

  • 2016 CAS Excellent Doctoral Dissertation

  • 2015 Talented Post-doctoral Fellowship of Dalian Institute of Chemical Physics, CAS

  • 2015 Outstanding Graduates Award of Beijing

  • 2015 Outstanding Graduates Award of University of CAS

  • 2015 CAS Dean Scholarship

  • 2014 Lu’An Energy & Chemical Engineering Scholarship

  • 2014 SynfuelsChina Award

  • 2014 National Scholarship

Biography

  • 2006.9-2010.6B.E., Department of Chemical Engineering, Sichuan University

  • 2010.9-2015.7Ph.D., Institute of Coal Chemistry, Chinese Academy of Sciences (CAS) & Synfuels China Co. Ltd.

  • 2015.7-2017.7Postdoctoral researcher, Dalian Institute of Chemical Physics, CAS

  • 2017.7-2021.1Postdoctoral researcher, Pacific Northwest National Laboratory

  • 2021.2-Tenure track Professor, Department of Chemistry, Fudan University

Teaching

  • X-ray diffraction analysis

Key Publications

  • Yang, C.; Ma, S.*; Liu, Y.; Wang, L.; Yuan, D.; Shao, W.-P.; Zhang, L.; Yang, F.; Lin, T.; Ding, H.; He, H.; Liu, Z.-P.; Cao, Y.; Zhu, Y.*; Bao, X.*, Homolytic H2 dissociation for enhanced hydrogenation catalysis on oxides. Nat. Commun. 2024, 15 (1), 540.

  • Yuan, D.#; Ma, S.#; Kong, X.; Zhang, C.; Chen, L.; Yang, C.; Wang, L.; Liu, Z.; Ye, L.; Liu, Y.; Ma, R.; Liu, Z.-P.; Zhu, Y.*; Cao, Y.; Bao, X.*, Confined Mn2+ enables effective aerobic oxidation catalysis. Sci. China Chem. 2024, 67 (5), 1545-1553.

  • Zhu, Y.; Luo, R.; Shi, H.; Koh, K.; Kovarik, L.; Fulton, J. L.; Lercher, J. A.; Zhao, Z.-J.; Gong, J.; Gutiérrez, O. Y., Formation of (Rh–Fe)–FeOx Complex Sites Enables Methanol Synthesis from CO2. ACS Catal. 2024, 10031-10039.

  • Ding, B.#; Yang, C.#; Chen, Y.; Shao, W.-P.; Yang, F.; Zhang, C.; Wang, Z.; Liu, Y.; Cao, Y.; Zhu, Y.; Bao, X., Cr2O3 clusters on ZnO as hydrogen pools for efficient syngas-to-light olefins. ChemCatChem 2024, e202401421.

  • Kong, X.*; Wu, H.; Lu, K.; Zhang, X.; Zhu, Y.*; Lei, H., Galvanic Replacement Reaction: Enabling the Creation of Active Catalytic Structures. ACS Appl Mater Interfaces 2023, 15 (35), 41205-41223.

  • Wang, Z.; Chang, H.; Zhang, J.; Sun, Z.; Wu, Y.; Liu, Y.-M.; Zhu, Y.*; He, H.; Cao, Y.*; Bao, X.*, Tandem catalytic methylation of naphthalene using CO2 and H2. Chem. Commun. 2022. doi:10.1039/D2CC00190J.

  • Li, N.#; Zhu, Y.#; Jiao, F.#; Pan, X.*; Jiang, Q.; Cai, J.; Li, Y.; Tong, W.; Xu, C.; Qu, S.; Bai, B.; Miao, D.; Liu, Z.; Bao, X.*, Steering the reaction pathway of syngas-to-light olefins with coordination unsaturated sites of ZnGaOx spinel. Nat Commun 2022, 13 (1), 2742.

  • Zhu, Y.; Yuk, S. F.; Zheng, J.; Nguyen, M.-T.; Lee, M.-S.; Szanyi, J.; Kovarik, L.; Zhu, Z.; Balasubramanian, M.; Glezakou, V.-A.; Fulton, J. L.; Lercher, J. A.; Rousseau, R.*; Gutiérrez, O. Y.*, Environment of Metal–O–Fe Bonds Enabling High Activity in CO2 Reduction on Single Metal Atoms and on Supported Nanoparticles. J. Am. Chem. Soc. 2021, 143 (14), 5540-5549.

  • Zhu, Y.#; Zheng, J.#; Ye, J.; Cui, Y.; Koh, K.; Kovarik, L.; Camaioni, D. M.; Fulton, J. L.; Truhlar, D. G.; Neurock, M.; Cramer, C. J.; Gutiérrez, O. Y.*; Lercher, J. A.*, Copper-zirconia interfaces in UiO-66 enable selective catalytic hydrogenation of CO2 to methanol. Nat. Commun. 2020, 11 (1), 5849. (Editor’s highlight)

  • Zhu, Y.; Zhang, X.; Koh, K.; Kovarik, L.; Fulton, J. L.; Rosso, K. M.; Gutiérrez, O. Y.*, Inverse iron oxide/metal catalysts from galvanic replacement. Nat. Commun. 2020, 11 (1), 3269. (Editor’s highlight)