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Water splitting over core-shell structural nanorod CdS@Cr2O3 catalyst by inhibition of H2-O2 recombination via removing nascent formed oxygen using perfluorodecalin 期刊论文
Applied Catalysis B: Environmental, 2018, 卷号: 221, 期号: 0, 页码: 618-625
Authors:  Tian B(田彬);  Gao W(高薇);  Zhang XQ(张旭强);  Wu YQ(吴玉琪);  Lu GX(吕功煊);  Wu YQ(吴玉琪);  Lv GX(吕功煊)
Adobe PDF(1209Kb)  |  Favorite  |  View/Download:154/5  |  Submit date:2017/12/18
One-dimensional Cds@cr2o3 Core/shell Nanorod Catalyst  High Efficient Photogenerated Charge Separation And Transfer  Suppression Of The Photocorrosion Of Cds  Inhibition Of The H2-o2 Recombination Reverse Reaction  Photocatalytic Hydrogen Generation  
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  
Carboxyl-assisted synthesis of Co nanorods with high energy facet on graphene oxide sheets for efficient photocatalytic hydrogen evolution 期刊论文
Applied Catalysis B: Environmental, 2017, 卷号: 203, 页码: 789-797
Authors:  Tian B(田彬);  Zhen WL(甄文龙);  Gao HB(高海波);  Hao XQ(郝旭强);  Li Z(李振);  Lu GX(吕功煊);  Lv GX(吕功煊)
Adobe PDF(3513Kb)  |  Favorite  |  View/Download:178/3  |  Submit date:2016/12/27
Co Nanorods  Carboxyl-assisted  High Surface Energy  Low Over-potential  Hydrogen Evolution  
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