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| Identifying active sites at the Cu/Ce interface for hydrogen borrowing reactions 期刊论文 Journal of Catalysis, 2023, 期号: 418, 页码: 163–177 Authors: Wang XZ(王新之); Li T(李腾); Wang HL(王红利); Zhao K(赵康); Huang YJ(黄永吉); Yuan HK(袁航空); Cui XJ(崔新江); Shi F(石峰) Adobe PDF(5751Kb)  |  Favorite  |  View/Download:17/0  |  Submit date:2023/11/07 |
| Pt nanoparticles confined in the ordered mesoporous CeO2 as a highly efficient catalyst for the elimination of VOCs 期刊论文 Journal of Catalysis, 2022, 卷号: 412, 期号: 412, 页码: 42-58 Authors: Wen M(文萌); Dong F(董芳); Yao JF(姚剑飞); Tang ZC(唐志诚); Zhang JY(张继义) Adobe PDF(5715Kb)  |  Favorite  |  View/Download:36/0  |  Submit date:2022/12/02 |
| Efficient hydrogenation catalyst designing via preferential adsorption sites construction towards active copper 期刊论文 Journal of Catalysis, 2021, 期号: 400, 页码: 397-406 Authors: dongchen he; Tao Wang; Teng Li; Xinzhi Wang; Hongli Wang; Xingchao Dai; Feng Shi Adobe PDF(3505Kb)  |  Favorite  |  View/Download:56/0  |  Submit date:2021/11/29 |
| Enhancing regioselectivity via tuning the microenvironment in heterogeneous hydroformylation of olefins 期刊论文 Journal of Catalysis, 2020, 卷号: 387, 期号: 0, 页码: 196 Authors: Jing Zhang; Peng Sun; Guang Gao; Jia Wang; Zelun Zhao; Yaseen Muhammad; Li FW(李福伟) Adobe PDF(2829Kb)  |  Favorite  |  View/Download:74/1  |  Submit date:2021/01/25 |
| Enhancing hydrogen generation via fabricating peroxide decomposition layer over NiSe/MnO2-CdS catalyst 期刊论文 Journal of Catalysis, 2018, 卷号: 367, 期号: 0, 页码: 269-282 Authors: Wenlong Zhen; Xiaofeng Ning; Meng Wang; Yuqi Wu; Gongxuan Lu Adobe PDF(5120Kb)  |  Favorite  |  View/Download:104/0  |  Submit date:2018/11/23 Over-all Water Splitting Fabricating Peroxide Decomposing Active Mno2 Thin-layer Inhibition Of Cds Photocorrosion Replacing Noble Metal Co-catalyst With Nise Qds Remove Nascent Formed Oxygen By Artificial Gill |
| Fe2S2 nano-clusters catalyze water splitting by removing formed oxygen using aid of an artificial gill under visible light 期刊论文 Journal of Catalysis, 2017, 卷号: 352, 页码: 572-578 Authors: Tian B(田彬); Li Z(李振); Zhen WL(甄文龙); Zhang XQ(张旭强); Lu GX(吕功煊); Lv GX(吕功煊) Adobe PDF(2335Kb)  |  Favorite  |  View/Download:94/1  |  Submit date:2017/11/24 Fe2s2 Nano-clusters Water Splitting Artificial Gill Visible Light |
| Different active sites in a bifunctional Co@N-doped graphene shells based catalyst for the oxidative dehydrogenation and hydrogenation reactions 期刊论文 Journal of Catalysis, 2017, 卷号: 355, 页码: 53-62 Authors: Li JL(李金磊); Liu GL(刘国亮); Long XD(龙向东); Gao G(高广); Wu J(吴君); Li FW(李福伟); Li FW(李福伟) Adobe PDF(1806Kb)  |  Favorite  |  View/Download:168/2  |  Submit date:2017/12/18 Co@n-doped Graphene Shells Bifunctional Catalysts Oxidative Dehydrogenation Hydrogenation Active Sites |
| Water splitting by CdS/Pt/WO3-CeOx photocatalysts with assisting of artificial blood perfluorodecalin 期刊论文 Journal of Catalysis, 2017, 卷号: 350, 页码: 189-196 Authors: Tian B(田彬); Yang BJ(杨宝军); Li, Jian; Li Z(李振); Zhen WL(甄文龙); Wu YQ(吴玉琪); Lu GX(吕功煊); Lv GX(吕功煊) Adobe PDF(2173Kb)  |  Favorite  |  View/Download:144/5  |  Submit date:2017/07/17 Water Splitting Photocatalysts Artificial Blood Perfluorodecalin |
| Inhibition of hydrogen and oxygen reverse recombination reaction over Pt/TiO2 by F- ions and its impact on the photocatalytic hydrogen formation 期刊论文 Journal of Catalysis, 2017, 卷号: 353, 页码: 162-170 Authors: Wang M(王蒙); Li Z(李振); Wu YQ(吴玉琪); Ma JT(马建泰); Lu GX(吕功煊); Wu YQ(吴玉琪); Lv GX(吕功煊) Adobe PDF(3374Kb)  |  Favorite  |  View/Download:113/2  |  Submit date:2017/11/24 Water Splitting H2 And O2 RecombinatiOn Back ReactiOn On Pt Co-catalyst InhibitiOn Role Of Fluorine IOns On Recombination Reaction |
| Enhancing activity for carbon dioxide methanation by encapsulating (111) facet Ni particle in metal-organic frameworks at low temperature 期刊论文 Journal of Catalysis, 2017, 卷号: 348, 页码: 200-211 Authors: Zhen WL(甄文龙); Gao, Feng; Tian B(田彬); Ding, Ping; Deng, Yibing; Li Z(李振); Gao, Haibo; Lu GX(吕功煊); Lv GX(吕功煊) Adobe PDF(4254Kb)  |  Favorite  |  View/Download:99/2  |  Submit date:2017/08/28 Co2 Methanation Ni(111) Facet High Activity Density-functional Theory Low Activation Energy |