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Novel Fe-based nanoglass as efficient noble-metal-free electrocatalyst for alkaline hydrogen evolution reaction Journal article
Scripta Materialia, 2020,Volume: 188,Page: 135-139
Authors:  Wu,Kaiyao;  Meng,Yuying;  Xu,Jincheng;  Edalati,Kaveh;  Shao,Huaiyu;  Li,Wei;  Lin,Huai Jun
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2021/03/11
Amorphous alloys  Fe-based alloy catalyst  High-pressure torsion  Hydrogen evolution reaction  Nanoglass  
Amorphous NiWO4 nanoparticles boosting the alkaline hydrogen evolution performance of Ni3S2 electrocatalysts Journal article
Applied Catalysis B: Environmental, 2020,Volume: 274
Authors:  Huang,Senchuan;  Meng,Yuying;  Cao,Yangfei;  Yao,Fen;  He,Zhujie;  Wang,Xuxu;  Pan,Hui;  Wu,Mingmei
Favorite |  | TC[WOS]:9 TC[Scopus]:13 | Submit date:2021/03/09
Amorphous nanoparticles  Hydrogen evolution reaction  Hydrothermal  Nickel sulfide  Nickel tungstate  
Two-Dimensional Layered Materials: High-Efficient Electrocatalysts for Hydrogen Evolution Reaction Journal article
ACS Applied Nano Materials, 2020,Volume: 3,Issue: 7,Page: 6270-6296
Authors:  Zhu,Qing;  Qu,Yuanju;  Liu,Detao;  Ng,Kar Wei;  Pan,Hui
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2D layered materials  electrocatalysis  engineering strategy  enhanced performance  hydrogen evolution reaction  
Highly improved electrocatalytic activity of NiSx: Effects of Cr-doping and phase transition Journal article
Applied Catalysis B: Environmental, 2020,Volume: 267
Authors:  Liu,Dong;  Tong,Rui;  Qu,Yuanju;  Zhu,Qing;  Zhong,Xiongwei;  Fang,Mingliang;  Ho Lo,Kin;  Zhang,Feifei;  Ye,Yinchao;  Tang,Yuxing;  Chen,Shi;  Xing,Guichuang;  Pan,Hui
Favorite |  | TC[WOS]:13 TC[Scopus]:15 | Submit date:2021/03/09
Cr-doped NiSx  Electrocatalyst  First priciples calculation  Hydrogen evolution reaction  Phase tranisition  
Design of novel pentagonal 2D transitional-metal sulphide monolayers for hydrogen evolution reaction Journal article
International Journal of Hydrogen Energy, 2020,Volume: 45,Issue: 32,Page: 16201-16209
Authors:  Ao,Kin Long;  Shao,Yangfan;  Chan,Iat Neng;  Shi,Xingqiang;  Kawazoe,Yoshiyuki;  Yang,Ming;  Ng,Kar Wei;  Pan,Hui
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2D materials  First-principles calculation  Hydrogen evolution reaction (HER)  Transitional-metal sulphide  
Synergistic electronic and morphological modulation on ternary Co1−xV xP nanoneedle arrays for hydrogen evolution reaction with large current density 具有协同电子结构和形貌调控功能的三元 Co1−xV xP纳米针阵列在大电流下的析氢性能研究 Journal article
Science China Materials, 2020
Authors:  Yang,Mingyang;  Shang,Chaoqun;  Li,Feifei;  Liu,Chen;  Wang,Zhenyu;  Gu,Shuai;  Liu,Di;  Cao,Lujie;  Zhang,Junjun;  Lu,Zhouguang;  Pan,Hui
Favorite |  | TC[WOS]:2 TC[Scopus]:1 | Submit date:2021/03/09
hydrogen evolution reaction  modulated morphology and electronic structures  overall water splitting  ternary Co1−xVxP  
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.
Favorite |  | TC[WOS]:9 TC[Scopus]:9 | Submit date:2019/04/08
Electronics  First-principles Calculations  Hydrogen Evolution Reaction  Two-dimensional Materials  
WS2 Nanosheets with Highly-Enhanced Electrochemical Activity by Facile Control of Sulfur Vacancies Journal article
ChemCatChem, 2019,Volume: 11,Issue: 11,Page: 2667-2675
Authors:  Zhu,Qing;  Chen,Wenzhou;  Cheng,Hua;  Lu,Zhouguang;  Pan,Hui
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annealing  DFT calculation  electrocatalyst  hydrogen evolution reaction  sulfur vacancy  WS2 nanosheets  
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.
Favorite |  | TC[WOS]:9 TC[Scopus]:8 | Submit date:2019/04/08
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.
Favorite |  | TC[WOS]:7 TC[Scopus]:7 | Submit date:2019/04/08
Electrocatalysis  Hydrogen Evolution Reaction  Nickel-molybdenum Nanosheets  Oxygen Evolution Reaction  Supercapacitors