Air-stable magnesium nickel hydride with autocatalytic and self-protective effect for reversible hydrogen storage

Among the factors which restrict the large-scale utilization of magnesium-based hydride as a hydrogen storage medium, the high operating temperature, slow kinetics, and air stability in particular are key obstacles. In this work, a novel method, namely hydriding combustion synthesis plus short-term...

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Veröffentlicht in:Nano research 2022-03, Vol.15 (3), p.2130-2137
Hauptverfasser: Ma, Zhongliang, Zhao, Yingyan, Wu, Zhaohui, Tang, Qinke, Ni, Jinlian, Zhu, Yunfeng, Zhang, Jiguang, Liu, Yana, Zhang, Yao, Li, Hai-Wen, Hu, Xiaohui, Zhu, Xinjian, Li, Liquan
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Sprache:eng
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Zusammenfassung:Among the factors which restrict the large-scale utilization of magnesium-based hydride as a hydrogen storage medium, the high operating temperature, slow kinetics, and air stability in particular are key obstacles. In this work, a novel method, namely hydriding combustion synthesis plus short-term mechanical milling followed by air exposure, was proposed to synthesize air stable and autocatalytic magnesium nickel hydride (Mg 2 NiH 4 ), which shows excellent hydrogen absorption/desorption kinetics, capacity retention and oxidation resistance. The short-term-milled Mg 2 NiH 4 can desorb 2.97 wt.% hydrogen within 500 s at 230 °C. Even after exposure under air atmosphere for 67 days, it can still desorb 2.88 wt.% hydrogen within 500 s at 230 °C. The experimental and theoretical results both indicated that the surface of as-milled Mg 2 NiH 4 was easy to be oxidized under air atmosphere. However, the in-situ formed Ni during air exposure of Mg 2 NiH 4 improved the hydrogen desorption kinetics, and the formed surface passivation layer maintained the hydrogen storage capacity and avoided further poisoning, which we called autocatalytic and self-protective effect. Such a novel dual effect modified the reaction activity and oxidation resistance of the air-exposed Mg 2 NiH 4 . Our findings provide useful insights into the design and preparation of air stable metal-based hydride for large-scale utilization and long-term storage.
ISSN:1998-0124
1998-0000
DOI:10.1007/s12274-021-3846-5