脱氢
吸附
催化作用
氢化物
纳米颗粒
氢
镍
球磨机
氢气储存
复合数
材料科学
纳米晶
化学工程
金属
化学
无机化学
纳米技术
冶金
物理化学
合金
复合材料
有机化学
吸附
工程类
作者
Dan Liang,Hui Wang,Jiangwen Liu,Liuzhang Ouyang,Min Zhu
出处
期刊:ACS applied energy materials
[American Chemical Society]
日期:2022-04-05
卷期号:5 (4): 4976-4984
被引量:33
标识
DOI:10.1021/acsaem.2c00206
摘要
Highly fine, dispersive, and active catalysts are essential for lowering the operating temperature of MgH2, a promising high-capacity material for solid-state hydrogen storage. In this work, ultrafine Ni nanoparticles (2–6 nm) are synthesized from the precursor nickel acetylacetonate (C10H14NiO4) on the surface of MgH2 by H2 plasma reduction process, followed by further ball milling. The obtained composite could rapidly release more than 6.5 wt % H within 10 min at 275 °C. Even at a low temperature of 225 °C, up to 6 wt % H could be desorbed. The MgH2–Ni composite also exhibits excellent low-temperature hydrogenation kinetics and almost no capacity degradation over nine hydrogenation/dehydrogenation cycles. The significant improvement in the hydrogen-storage properties is attributed to the in situ formation of ultrafine and stable Mg2NiH0.3 nanocrystals during cycling. This work provides a convenient approach to synthesize ultrafine metal nanoparticles for catalytic applications in the field of high energy storage density hydride materials.
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