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Nature Communications|February 24, 2025
Optimizing selectivity via steering dominant reaction mechanisms in steam reforming of methanol for hydrogen productionMengyuan Zhang, Zhi Liu, Yong Yan, et al.Journal of the American Chemical Society|April 10, 2024
Spatial Distribution of Brønsted Acid Sites Determines the Mobility of Reactive Cu Ions in the Cu-SSZ-13 Catalyst during the Selective Catalytic Reduction of NO with NH3Yu Fu, Wenqing Ding, Huarong Lei, et al.Environmental Science & Technology|August 28, 2025
Boosting Ag/Al2O3 Catalytic Activity for NOx Removal via C3H6-SCR through Functional TiO2 Support EngineeringYun Zhong, Yingsheng An, Zidi Yan, et al.Journal of Environmental Sciences (China)|November 3, 2023
Interface sites on vanadia-based catalysts are highly active for NOx removal under realistic conditionsZhihui Lv, Guangzhi He, Wenshuo Zhang, et al.Environmental Science & Technology|May 23, 2024
Precisely Identifying the Sources of Magnetic Particles by Hierarchical Classification-Aided Isotopic FingerprintingHang Yang, Xuezhi Yang, Qinghua Zhang, et al.Environmental Science & Technology|September 4, 2025
Site-Engineered MnGa@In-CHA OXZEO Catalysts for Synergistic Methane and Nitrogen Oxides AbatementChunlei Zhang, Guangyan Xu, Yanshuang Zhang, et al.Environmental Science & Technology|November 2, 2022
Si/Al Ratio Determines the SCR Performance of Cu-SSZ-13 Catalysts in the Presence of NO2Yu Sun, Yu Fu, Yulong Shan, et al.Journal of Environmental Sciences (China)|July 2, 2025
Towards rational design of Cu-SSZ-13 catalysts with less N2O formation in NH3-SCR reaction: The effect of Brønsted acid sitesJianqi Liu, Jinpeng Du, Jingyi Wang, et al.Chemical Science|November 7, 2025
Single site of water-resistant asymmetric Bi-Ov-Mn for robust VOC ozonation at ambient temperatureYuqin Lu, Huayang Zhang, Hua Deng, et al.Journal of the American Chemical Society|July 1, 2021
Adsorption-Induced Active Vanadium Species Facilitate Excellent Performance in Low-Temperature Catalytic NO AbatementZhihua Lian, Jie Wei, Wenpo Shan, et al.Pageof 8