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Design of pentagonal NbX monolayers for electronics and electrocatalysis Journal article
Applied Surface Science, 2019,Volume: 479,Page: 595-600
Authors:  Chen W.;  Yang M.;  Sun Y.-Y.;  Kawazoe Y.;  Shi X.;  Pan H.
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Electronics  First-principles Calculations  Hydrogen Evolution Reaction  Two-dimensional Materials  
Vanadium self-intercalated C/V 1.11 S 2 nanosheets with abundant active sites for enhanced electro-catalytic hydrogen evolution Journal article
Electrochimica Acta, 2019,Volume: 300,Page: 208-216
Authors:  Yang M.;  Cao L.;  Wang Z.;  Qu Y.;  Shang C.;  Guo H.;  Xiong W.;  Zhang J.;  Shi R.;  Zou J.;  Cheng C.;  Pan H.;  Lu Z.
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C/v 1.11 s 2 Nanosheets  Electrocatalysts  Gibbs Free Energy For Hydrogen Adsorption  Hydrogen Evolution Reaction  Self-intercalated  
Network-Like Ni 1−x Mo x Nanosheets: Multi-Functional Electrodes for Overall Water Splitting and Supercapacitor Journal article
ChemElectroChem, 2019,Volume: 6,Issue: 5,Page: 1338-1343
Authors:  Tong R.;  Sun Z.;  Wang X.;  Wang S.;  Pan H.
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Electrocatalysis  Hydrogen Evolution Reaction  Nickel-molybdenum Nanosheets  Oxygen Evolution Reaction  Supercapacitors  
Polyoxometalate-Derived Hexagonal Molybdenum Nitrides (MXenes) Supported by Boron, Nitrogen Codoped Carbon Nanotubes for Efficient Electrochemical Hydrogen Evolution from Seawater Journal article
Advanced Functional Materials, 2019,Volume: 29,Issue: 8
Authors:  Miao J.;  Lang Z.;  Zhang X.;  Kong W.;  Peng O.;  Yang Y.;  Wang S.;  Cheng J.;  He T.;  Amini A.;  Wu Q.;  Zheng Z.;  Tang Z.;  Cheng C.
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density functional theory calculations  doped carbon nanotubes  hydrogen evolution reaction  MXenes  polyoxometalate  
Highly stable tungsten disulfide supported on a self-standing nickel phosphide foam as a hybrid electrocatalyst for efficient electrolytic hydrogen evolution Journal article
NANO ENERGY, 2019,Volume: 55,Page: 193-202
Authors:  Yu, Shu Hearn;  Chen, Wenzhou;  Wang, Hongyu;  Pan, Hui;  Chua, Daniel H. C.
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Hydrogen Evolution Reaction  Tungsten Disulfide  Nickel Phosphide  Hybridized Electrocatalyst  Three-dimensional  Ni Foam  Water Splitting  
In Situ Grown Epitaxial Heterojunction Exhibits High-Performance Electrocatalytic Water Splitting Journal article
Advanced Materials, 2018,Volume: 30,Issue: 13
Authors:  Zhu C.;  Wang A.-L.;  Xiao W.;  Chao D.;  Zhang X.;  Tiep N.H.;  Chen S.;  Kang J.;  Wang X.;  Ding J.;  Wang J.;  Zhang H.;  Fan H.J.
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epitaxial in-growth  hydrogen evolution reaction  metal nitride arrays  nanoconfinement  oxygen evolution reaction  
Ultrafine Metal Nanoparticles/N-Doped Porous Carbon Hybrids Coated on Carbon Fibers as Flexible and Binder-Free Water Splitting Catalysts Journal article
Advanced Energy Materials, 2017,Volume: 7,Issue: 15
Authors:  Zhang Y.;  Xia X.;  Cao X.;  Zhang B.;  Tiep N.H.;  He H.;  Chen S.;  Huang Y.;  Fan H.J.
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bifunctional electrocatalysts  hydrogen evolution reaction  metal particles in carbon  oxygen evolution reaction  water splitting  
Facile Synthesis of Vanadium-Doped Ni3S2 Nanowire Arrays as Active Electrocatalyst for Hydrogen Evolution Reaction Journal article
ACS APPLIED MATERIALS & INTERFACES, 2017,Volume: 9,Issue: 7,Page: 5959-5967
Authors:  Qu, Yuanju;  Yang, Mingyang;  Chai, Jianwei;  Tang, Zhe;  Shao, Mengmeng;  Kwok, Chi Tat;  Yang, Ming;  Wang, Zhenyu;  Chua, Daniel;  Wang, Shijie;  Lu, Zhouguang;  Pan, Hui
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Hydrogen Evolution Reaction  Water-splitting Electrocatalyst  Transition Metal Sulfide  Doping First-principles Calculation  
3D Porous Hierarchical Nickel–Molybdenum Nitrides Synthesized by RF Plasma as Highly Active and Stable Hydrogen-Evolution-Reaction Electrocatalysts Journal article
Advanced Energy Materials, 2016,Volume: 6,Issue: 11
Authors:  Zhang Y.;  Ouyang B.;  Xu J.;  Chen S.;  Rawat R.S.;  Fan H.J.
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electrocatalysis  hierarchical 3D structures  hydrogen-evolution reaction  nickel–molybdenum nitride  plasma treatment  
Easy incorporation of single-walled carbon nanotubes into two-dimensional MoS2 for high-performance hydrogen evolution Journal article
Nanotechnology, 2014,Volume: 25,Issue: 46
Authors:  Cai Y.;  Yang X.;  Liang T.;  Dai L.;  Ma L.;  Huang G.;  Chen W.;  Chen H.;  Su H.;  Xu M.
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carbon nanotubes  hydrogen evolution reaction  molybdenum disulfide