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Fundamental Research|August 8, 2025
Recent progress of thermocatalytic ammonia synthesis via an associative mechanismYangyu Zhang, Jiaxin Li, Yanliang Zhou, et al.Chemical Science|April 26, 2024
Single-atom and cluster catalysts for thermocatalytic ammonia synthesis at mild conditionsXuanbei Peng, Mingyuan Zhang, Tianhua Zhang, et al.ACS Applied Materials & Interfaces|April 1, 2026
Enhancing Ammonia Synthesis over Ru-Based Catalysts via Engineering of Rare-Earth Oxide SupportsXiaohu Hu, Linkun Chen, Kailin Su, et al.Journal of the American Chemical Society|June 6, 2023
Retrofitting Zr-Oxo Nodes of UiO-66 by Ru Single Atoms to Boost Methane Hydroxylation with Nearly Total SelectivityGeqian Fang, Fenfei Wei, Jian Lin, et al.ACS Applied Materials & Interfaces|November 28, 2023
Boosting N<sub>2</sub> Conversion into NH<sub>3</sub> over Ru Catalysts via Modulating the Ru-Promoter InterfaceKailin Su, Dongya Huang, Hongpeng Fang, et al.ACS Applied Materials & Interfaces|July 31, 2025
Modulating Co-Re Pairs in CoRe Alloy for Efficient NH<sub><b>3</b></sub> Synthesis under Mild ConditionsKailin Su, Zhiyuan Zheng, Dongya Huang, et al.Journal of the American Chemical Society|August 18, 2025
Ru Single Atom and Nanoparticle Tandem Catalyst Unlocking High-Efficiency Ammonia Synthesis under Mild ConditionsYanliang Zhou, Bo Yang, Lu Wang, et al.Journal of the American Chemical Society|August 12, 2024
Precious-Metal-Free Mo-MXene Catalyst Enabling Facile Ammonia Synthesis Via Dual Sites Bridged by H-SpilloverYanliang Zhou, Lili Liang, Congying Wang, et al.Journal of the American Chemical Society|June 11, 2026
A High-Performance Bimetallic Ru<sub>1</sub>Mo<sub>6</sub> Active Site for Thermal Ammonia Synthesis under Mild ConditionsYanliang Zhou, Cong Zhang, Kailin Su, et al.Angewandte Chemie (International Ed. in English)|July 16, 2020
Controlling CO<sub>2</sub> Hydrogenation Selectivity by Metal-Supported Electron TransferXiaoyu Li, Jian Lin, Lin Li, et al.Pageof 2