1. "Relay Catalysis in Selective Transformations of C1 into C2+ Molecules", Y. Li; S. Liu; Y. Xie; K. Cheng; Q. Zhang; J. Kang and Y. Wang, Chem. Rev. 2026 , 126, 12, 7112–7164
2. "Interfacial Synergy in NixMg1-xO/CeO2 for Efficient Ammonia Decomposition", J. Xie; B. Li; X. Li; T. Tan; Y. Han; Y. Su; J. Kang; Q. Zhang and Y. Wang, Angew. Chem. Int. Ed. 2026, 65, e22044.
3. "Hydrogen Aggregation Enhances CO2 Hydrogenation to Methanol Over In2O3-Based Catalysts", C. Wang; B. Wang; D.Tian; Y. Wang; Y. Zheng; Y. Wang; Z. Liu; K. Cheng; H. Wang and K. Li, Angew. Chem. Int. Ed. 2026, 65, e6478038.
4. "Asymmetric Vacancies Efficiently Couple O2 Activation With Reactive Oxygen Species Evolution for Enhanced Photocatalytic Methane Conversion", H. Zhang; S. Wang; H. Liu; Q. Zhang; X. Wu; Y. Wang ang S. Xie, Angew. Chem. Int. Ed. 2026, 65, e7358043.
5."Subnanometer Ru Sites on CeO2 Oxygen Vacancy Clusters: A Highly Efficient and Durable Catalyst for Ammonia Decomposition'', J. Xie; L. Zeng; W. Yuan; X. Li; C. Zou; T. Tan; Z. Huang; Y. Wei; F. Sun; Y. Liu; R. Qin; J. Kang; Q. Zhang; Y. Wang, J. Am. Chem. Soc. 2026,148, 27, 28214–28225
6."Precision Selenium Doping Unlocks Palladium Nanocluster for Efficient Chemoselective Hydrogenations", X. Hu; J. Wang; T. Liu; H. Fu; X. Wu; S. Zheng; Q. Zhang; Pedro J. J. Alvarez; X. Qu and Y. Wang, J. Am. Chem. Soc. 2026, 148, 21, 22178–22188
7."Direct Photocatalytic Anaerobic Conversion of Methane and Water to Acetone over RhPd Alloy-Modified TiO2", Z. Guo; H. Zhang; A. Chen; J. Li; Y. Duan; X. Wu; A. Mehmood; B. Wang; J. Xiao; Y. Wang and K. Cheng, J. Am. Chem. Soc. 2026, DOI:10.1021/jacs.6c14611
8."Kinetically Balanced Relay Catalysis for Efficient Oxidation of Methane to Methanol with O2'', W. Wang; F. Wu; J. Cheng; Y. Tang; W. Zhou; K. Cheng; J. Wang; J. Liu; Q. Zhang; C. Copéret and Y. Wang, J. Am. Chem. Soc. 2026, DOI:10.1021/jacs.6c13231
9."Atomically dispersed Pd-Mn dual-metal doped CeO2 nanorods for efficient methane oxychlorination", Y. Han; F. Wu; K. Zhao; C. Hao; Z. Sun; H. Li; Y. Liu; S. Li; K. Cheng; F. Sun; X. Wang; S. Hu; W. Weng; S. Wang; Q. Zhang and Y. Wang, Nat. Commun. 2026, 17, 1339.
10."Multi-scale roles of water in electrocatalytic CO2 and CO reduction", X. He; W. Zhou; J. Chen; Q Zhang; Y. Wang and S. Xie, Chem. Soc. Rev. (2026) 55 (7): 4303–4341.
11."Electrocatalytic activation of C–H, C–O, and C–C bonds in biomass valorization: mechanisms and catalysts", M. Liu; G. Xu; C. Lin; X. Chen; B. Lin; W. Liu and S. Xie, Green Chem. (2026) 28 (12): 5131–5166.
12."Ionomers modulate the microenvironment in electrocatalytic CO2 reduction", S. Ruan; G. Tang; Z. Zhang; Q. Zhang; Y. Wang and S. Xie, Chem. Sci. 2026, 17, 96-117.
13.''Silica-confined Cu2O nanoparticles for propylene epoxidation with molecular oxygen'', J.Cheng; K. Wang; Y. Meng; J. Wang; Z. Liu; J. Wang; J. Liu; K. Cheng; Q. Zhang and Y. Wang, Chin. J. Catal. 2026, 86:77-88.
14."Promoted Cadmium Catalysts Supported on TiO2 for Efficient CO2 Hydrogenation to Methanol", F. Guo; Y. Cai; L. Ge; H. Chen; J. Kang; K. Cheng; Q. Zhang and Y. Wang, Chem. Eur. J. 2026, 32, e03649.
15.''Sodium-promoted bimetallic M–CoOx catalysts (M = In, Ga, Mo, Mn, and V) for the hydrogenation of CO2 to C2+ hydrocarbons'', Z. Liu; F. Guo; M. Li; S. Jiang; X. Lang; A. D. Chowdhury and K.Cheng, Chem. Commun. 2026, 62, 55, 13767–13771.
16.''Methanol bridges H2 storage/release with CO2-to-hydrocarbon chemicals'', H. Gang; F. Li; T. Zhang; M. Wang; Z. Huang; Y. Li; D. He; K. Cheng and Y. Luo, J. Energy Chem. 2026, DOI:10.1016/j.jechem.2026.08.092