论著和专利 |
(1) S. Zhou, L. Cheng, Y. Huang, Y. Liu, L. Shi, T.T. Isimjan, X. Yang, Constructing Ru particles decorated Co3B-CoP heterostructures as a highly active and reusable catalyst for H2 generation by catalyzing NaBH4 hydrolysis, Appl. Catal. B Environ., 328 (2023) 122519. (TOP一区,IF = 20.2) (2) S. Zhou, Y. Liu, C. Niu, J. Guo, T.T. Isimjan, J. Tian, X. Yang, Modulation of the d-band center through strong metal-support interaction with Ru and Cu3P-MoP for efficient hydrogen oxidation, Chemical Engineering Journal, 522 (2025) 167732. (TOP一区,IF = 13.2) (3) S. Zhou, Q. Yang, Y. Liu, L. Cheng, T. Taylor Isimjan, J. Tian, X. Yang, Electronic metal-support interactions for defect-induced Ru/Co-Sm2O3 mesosphere to achieve efficient NaBH4 hydrolysis activity, J. Catal., 433 (2024) 115491. (TOP一区,IF = 6.5) (4) S. Zhou, Y. Liu, C. Niu, T.T. Isimjan, J. Tian, X. Yang, Lattice strain engineering of Ni-doped Pd nanoparticles: Realizing efficient and CO-resistant alkaline hydrogen oxidation, Renew. Energy, 240 (2025) 122242. (TOP一区,IF = 9.0) (5) S. Zhou, Y. Liu, L. Cheng, T.T. Isimjan, J. Tian, X. Yang, Electronic metal–support interaction via Ni defect-induced Ru-modified Ni–CeO2 for enhanced hydrogen oxidation activity, Inorg. Chem. Front., 11 (2024) 5244.(SCI一区,IF = 6.1) (6) S. Zhou, Y. Yang, W. Zhang, X. Rao, P. Yan, T.T. Isimjan, X. Yang, Structure-regulated Ru particles decorated P-vacancy-rich CoP as a highly active and durable catalyst for NaBH4 hydrolysis, J. Colloid Interface Sci., 591 (2021) 221-228. (TOP一区,IF = 9.4) (7) S. Zhou, L. Cheng, Y. Liu, J. Tian, C. Niu, W. Li, S. Xu, T.T. Isimjan, X. Yang, Highly Active and Robust Catalyst: Co2B–Fe2B Heterostructural Nanosheets with Abundant Defects for Hydrogen Production, Inorg. Chem., 63 (2024) 2015-2023. (SCI二区,IF = 4.3) |