Synergy between metallic components of MoNi alloy for catalyzing highly efficient hydrogen storage of MgH2

被引:0
|
作者
Meng Chen
Yanhui Pu
Zhenyang Li
Gang Huang
Xiaofang Liu
Yao Lu
Wukui Tang
Li Xu
Shuangyu Liu
Ronghai Yu
Jianglan Shui
机构
[1] Beihang University,School of Materials Science and Engineering
[2] COMAC Beijing Aircraft Technology Research Institute,Beijing Key Laboratory of Civil Aircraft Structures and Composite Material
[3] Global Energy Interconnection Research Institute Beijing,Material Laboratory of State Grid Corporation of China
来源
Nano Research | 2020年 / 13卷
关键词
hydrogen storage; Mg hydride; catalyst; synergetic effect; MoNi alloy;
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中图分类号
学科分类号
摘要
Catalysts play a critical role in improving the hydrogen storage kinetics in Mg/MgH2 system. Exploring highly efficient catalysts and catalyst design principles are hot topics but challenging. The catalytic activity of metallic elements on dehydrogenation kinetics generally follows a sequence of Ti>Nb>Ni>V>Co>Mo. Herein, we report a highly efficient alloy catalyst composed of low-active elements of Mo and Ni (i.e. MoNi alloy) for MgH2 particles. MoNi alloy nanoparticles show excellent catalytic effect, even outperforming most advanced Ti-based catalysts. The synergy between Mo and Ni elements can promote the break of Mg-H bonds and the dissociation of hydrogen molecules, thus significantly improves the kinetics of Mg/MgH2 system. The MoNi-catalyzed Mg/MgH2 system can absorb and release 6.7 wt.% hydrogen within 60 s and 10 min at 300 °C, respectively, and exhibits excellent cycling stability and low-temperature hydrogen storage performance. This study provides a strategy for designing efficient catalysts for hydrogen storage materials using the synergy of metal elements.
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页码:2063 / 2071
页数:8
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