代表性论文
1.Qin, X. et al. Direct conversion of CO and H2O to hydrocarbons at atmospheric pressure using a TiO2–x/Ni photothermal catalyst. Nat Energy 9, 154–162 (2024).
2.Li, S. et al. Atomically intimate assembly of dual metal–oxide interfaces for tandem conversion of syngas to ethanol. Nat Nanotechnol 20, 255-264 (2024).
3.Yuan, C-Y. et al. Constructing Metal(II)-Sulfate Site Catalysts toward Low Overpotential Carbon Dioxide Electroreduction to Fuel Chemicals. Angew Chem Int Ed e202405255 (2024).
4.Pu, Y.-X. et al. The Nature of the Active Center for the Oxygen Reduction Reaction on Ag-Based Single–Atom Alloy Cluster. JACS Au. 2024, 4, 2886–2895.
5.Zhao, J.-W. et al. Crystal-Phase Engineering in Heterogeneous Catalysis. Chem Rev 124, 164–209 (2024).
6.Xu, M. et al. Boosting CO hydrogenation towards C2+ hydrocarbons over interfacial TiO2−x/Ni catalysts. Nat Commun 13, 6720 (2022).
7.Zhang, Y. et al. Structure-Sensitivity of Au–TiO2 Strong Metal–Support Interaction. Angew Chem Int Ed 60, 2–10 (2021).
8.Li, S. et al. Atomically Dispersed Ir/Α–MoC Catalyst with High Metal Loading and Thermal Stability for Water–Promoted Hydrogenation Reaction. Natl Sci Rev 9, nwab026 (2021).
9.Wang, H. et al. Surpassing the Single–Atom Catalytic Activity Limit through Paired Pt-O-Pt Ensemble Built from Isolated Pt1 Atoms. Nat Commun 10, 3808 (2019).
10.Liu, J.-X. et al. A Linear Scaling Relation for CO Oxidation on CeO2-Supported Pd. J Am Chem Soc 140, 4580–4587 (2018).
11.Li, W-Z. et al. Chemical Insights into the Design and Development of Face-Centered Cubic Ruthenium Catalysts for Fischer–Tropsch Synthesis. J Am Chem Soc 139, 2267 (2017).
12.Liu, J.-X. et al. Crystallographic Dependence of Co Activation on Cobalt Catalysts: HCP Versus FCC. J Am Chem Soc 135, 16284–16287 (2013).
13.Wang, H. et al. Platinum–Modulated Cobalt Nanocatalysts for Low-Temperature Aqueous-Phase Fischer–Tropsch Synthesis. J Am Chem Soc 135, 4149–4158 (2013).