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Geometrical effect in Mg-based metastable nano alloys with BCC structure for hydrogen storage Journal article
International Journal of Hydrogen Energy, 2019,Volume: 44,Issue: 55,Page: 29291-29296
Authors:  Li,Jianding;  Li,Bo;  Yu,Xueqing;  Zhao,Huajun;  Shao,Huaiyu
Favorite |  | TC[WOS]:8 TC[Scopus]:7 | Submit date:2021/03/11
Bcc  Geometrical Effect  Hydrogen Storage  Mg-based Materials  
Kinetics in Mg-based hydrogen storage materials: Enhancement and mechanism Journal article
Journal of Magnesium and Alloys, 2019,Volume: 7,Issue: 1,Page: 58-71
Authors:  Luo,Qun;  Li,Jianding;  Li,Bo;  Liu,Bin;  Shao,Huaiyu;  Li,Qian
Favorite |  | TC[WOS]:156 TC[Scopus]:177 | Submit date:2021/03/11
Hydriding/dehydriding Reactions  Hydrogen Storage Materials  Kinetics  Magnesium Alloys  
Enhanced hydrogen storage kinetics in Mg@FLG composite synthesized by plasma assisted milling Journal article
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018,Volume: 43,Issue: 36,Page: 17346-17352
Authors:  Lang, Chengguang;  Ouyang, Liuzhang;  Yang, Lingli;  Dai, Leyang;  Wu, Daifeng;  Shao, Huaiyu;  Zhu, Min
Favorite |  | TC[WOS]:13 TC[Scopus]:17 | Submit date:2018/10/30
Few-layer Graphene  Magnesium Hydride  Dehydriding Kinetics  Plasma Assisted Milling  
The catalysis mechanism of La hydrides on hydrogen storage properties of MgH2 in MgH2+xwt.% LaH3 (x=0,10,20, and 30) composites Journal article
Journal of Alloys and Compounds, 2013,Page: 64-69
Authors:  Zhu, X.;  Pei, L.;  Zhao, Z.;  Liu, B.;  Han, S.;  Wang, R.
Favorite |  | TC[WOS]:0 TC[Scopus]:0 | Submit date:2022/07/29
catalysis  microstructure  
The catalysis mechanism of la hydrides on hydrogen storage properties of MgH2 in MgH2 + x wt.% LaH3 (x = 0, 10, 20, and 30) composites Journal article
Journal of Alloys and Compounds, 2013,Volume: 577,Page: 64-69
Authors:  Zhu X.;  Pei L.;  Zhao Z.;  Liu B.;  Han S.;  Wang R.
Favorite |  | TC[WOS]:30 TC[Scopus]:32 | Submit date:2018/11/06
Catalysis  Hydrogen absorbing materials  Microstructure  Phase transitions  Rare earth alloys and compounds  Thermodynamic properties