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Angewandte Chemie (International Ed. in English)|May 13, 2024
In Situ Self-Assembled Active and Stable Ir@MnOx/La0.7Sr0.3Cr0.9Ir0.1O3-δ Interfaces for CO2 ElectrolysisYuxiang Shen, Shuo Wang, Rongtan Li, et al.Angewandte Chemie (International Ed. in English)|September 25, 2023
Directing the Selectivity of CO Electrolysis to Acetate by Constructing Metal-Organic InterfacesYouwen Rong, Tianfu Liu, Jiaqi Sang, et al.Nature Communications|September 28, 2021
Promoting exsolution of RuFe alloy nanoparticles on Sr2Fe1.4Ru0.1Mo0.5O6-δ via repeated redox manipulations for CO2 electrolysisHoufu Lv, Le Lin, Xiaomin Zhang, et al.Angewandte Chemie (International Ed. in English)|August 15, 2024
In-Situ Dynamic Carburization of Mo Oxide with Unprecedented High CO Formation Rate in Reverse Water-Gas Shift ReactionXiangze Du, Rongtan Li, Hui Xin, et al.Journal of the American Chemical Society|April 9, 2025
Oxide Support Inert in Its Interaction with Metal but Active in Its Interaction with Oxide and Vice VersaCui Dong, Rongtan Li, Zhenping Qu, et al.Nature Communications|April 8, 2024
Water-assisted oxidative redispersion of Cu particles through formation of Cu hydroxide at room temperatureYamei Fan, Rongtan Li, Beibei Wang, et al.Nature Communications|April 18, 2025
ZnOx overlayer confined on ZnCr2O4 spinel for direct syngas conversion to light olefinsXiaohui Feng, Haoran Jia, Rongtan Li, et al.Fundamental Research|December 30, 2024
Redox-manipulated RhO nanoclusters uniformly anchored on Sr2Fe1.45Rh0.05Mo0.5O6-δ perovskite for CO2 electrolysisHoufu Lv, Le Lin, Xiaomin Zhang, et al.Journal of the American Chemical Society|February 17, 2024
Confinement-Induced Indium Oxide Nanolayers Formed on Oxide Support for Enhanced CO2 Hydrogenation ReactionJianyang Wang, Rongtan Li, Guanghui Zhang, et al.Journal of the American Chemical Society|December 11, 2025
In Situ Exsolution of High-Density Ni Nanoparticles in LaAl0.3Mn0.2Ni0.5O3-δ Cathode for the Electro-Thermocatalytic CO2-Intensified Dry Reforming of MethaneHaolin Liu, Shuo Wang, Houfu Lv, et al.Pageof 5