17. F. Li, Y. Chen, A. Gao, W. Tong, C Ji, Y Cheng, Y.-H. Zhou*, Integration of polypyridyl-based ionic liquids into MIL-101 for promoting CO2 conversion into cyclic carbonates under cocatalyst-free and solventless conditions, New J. Chem. 2022, 46, 18418-18425.
16. A. Gao, F. Li, Z. Xu, C Ji, J Gu, Y.-H. Zhou*, Guanidyl-implanted UiO-66 as efficient catalysts for enhanced conversion of carbon dioxide into cyclic carbonates, Dalton Trans. 2022, 51, 2567-2576.
15. K. Ye, Z. He, F. Wu, Y. Wang, L. Wang, Y. Cheng, Ying-Hua Zhou*, Carbon nitride-supported CuCeO2 composites derived from bimetal MOF for efficiently electrocatalytic nitrogen fixation, Int J Hydrogen Energy, 2021, 46, 35319-35329.
14. K. Zhang, X. Cao, Z. Zhang, Y. Cheng, Ying-Hua Zhou*, MIL-101(Cr) with incorporated polypyridine zinc complexes for efficient degradation of nerve agent simulant: spatial isolation of active sites promoting catalysis, Dalton Trans. 2021, 50, 1995-2000.
13. Y-H Zhou*, X Cao, J Ning, C Ji, Y Cheng, J Gu*, Pd-doped Cu nanoparticles confined by ZIF-67@ZIF-8 for efficient dehydrogenation of ammonia borane, Int J Hydrogen Energy, 2020, 45, 31440-31451.
12. F Yang, W Hu, C Yang, M Patrick, A L Cooksy, J Zhang, J A Aguiar, C Fang, Y-H Zhou,* Y S Meng, J Huang,* J Gu*, Tuning Internal Strain in Metal–Organic Frameworks via Vapor Phase Infiltration for CO2 Reduction, Angew Chem Int Ed, 2020, 59, 4572-4580.
11. Zhou, Y.-H.*; Zhang, Z.;Patrick, M.; Yang, F.; Wei, R.; Cheng, Y.; Gu, J.*; Cleaving DNA-model Phosphodiester with Lewis Acid-Base Catalytic Sites in Bifunctional Zr-MOFs, Dalton Trans. 2019, 48, 8044-8048.
10. Zhou, Y.-H.*; Zhang, Z.; Wang, S.;Williams, N.; Cheng, Y.; Luo, S.;Gu, J.*; rGO supported PdNi-CeO2 nanocomposite as an efficient catalyst for hydrogen evolution from the hydrolysis of NH3BH3, Int J Hydrogen Energy 2018, 43, 18745-18753
9. Zhou, Y.-H.*; Wang, S.-Q.; Zhang, Z.; Williams, N.; Cheng, Y.; Gu, J.*; Hollow NiCo Layered Double Hydroxide Supported Pd Catalysts for Superior Hydrogen Evolution Activity for Hydrolysis of Ammonia Borane, ChemCatChem 2018, 10, 3206-3213.
8. Zhou, Y.-H.; Yang Q.-H.; Chen Y.-Z.; Jiang H.-L.*; Low-cost CuNi@MIL-101 as an excellent catalyst toward cascade reaction: integration of ammonia borane dehydrogenation with nitroarene hydrogenation, Chem. Commun. 2017, 53, 12361-12364.
7. Zhou, Y.-H.*; Wang, S.-Q.; Wan, Y.; Liang, J.; Chen, Y.; Luo, S.; Cheng, Y.; Low-cost CuNi-CeO2/rGO as an efficient catalyst for hydrolysis of ammonia borane and tandem reduction of 4-nitrophenol, J. Alloys Compd., 2017, 728, 902-909.
6. Zhou, Y.-H.*; Wang, S.-Q.; Chen, L.-Q.; Gong, D.-Y.; Ni, P.; Cheng, Y.; Effective reduction of p-nitrophenol catalyzed by nickel(II) adamantane complexes, Transit. Metal Chem., 2017, 42, 175-180.
5. Zhou, Y.-H.*; Liu, X.-W.; Tao, J.; Wang, S.-Q.; Ren, P.; Ni, P.; Cheng, Y.; p-nitrophenyl acetate hydrolysis promoted by Zn(II) and Co(II) complexes with the tripodal ligand of N,N'-bis(2-quinolinylmethyl)amantadine, J. Coord. Chem. 2017, 70, 177-188.
4. Zhou, Y.-H.*; Chen, L.-Q.; Tao, J.; Shen, J.-L.; Gong, D.-Y.; Yun, R.-R.; Cheng, Y.; Effective cleavage of phosphodiester promoted by the zinc(II) and copper(II) Inclusion complexes of β-cyclodextrin, J. Inorg. Biochem., 2016, 163, 176-184.
3. Zhou, Y.-H.*; Liu, X.-W.; Chen, L.-Q.; Wang, S.-Q.; Cheng, Y.; Synthesis, structure and superoxide dismutase-like activity of two mixed-ligand Cu(II) complexes with N,N’-bis(2-pyridylmethyl)- amantadine, Polyhedron 2016, 117, 788-794.
2. Zhou, Y.-H.*; Tao, J.; Sun, D.-L.; Chen, L.-Q.; Jia, W.-G.; Cheng, Y., Synthesis, structure and superoxide dismutase-like activity of copper(II) complexes based on N,N'-bis(2- quinolinylmethyl)amantadine, Polyhedron 2015, 85, 849-856.
1. Zhou, Y.-H.*; Tao, J.; Lv, Q.-C.; Jia, W.G.; Yun, R..; Cheng, Y., Effect of the amide groups on superoxide dismutation catalyzed by copper(II) complexes of adamantane, Inorg. Chim. Acta 2015, 426, 211-210.