脱氢
纳米晶材料
氢气储存
动力学
氢
化学工程
解吸
材料科学
碳纤维
锂(药物)
纳米颗粒
镍
化学
催化作用
冶金
纳米技术
物理化学
复合材料
有机化学
吸附
复合数
内分泌学
工程类
物理
医学
量子力学
作者
Lei Zang,Song Liu,Huinan Guo,Xiaoya Chang,Xiangqian Xu,Lifang Jiao,Huatang Yuan,Yijing Wang
标识
DOI:10.1002/asia.201701649
摘要
Abstract Lithium alanate (LiAlH 4 ) is of particular interest as one of the most promising candidates for solid‐state hydrogen storage. Unfortunately, high dehydrogenation temperatures and relatively slow kinetics limit its practical applications. Herein, 3D flower‐like nanocrystalline Ni/C, composed of highly dispersed Ni nanoparticles and interlaced carbon flakes, was synthesized in situ. The as‐synthesized nanocrystalline Ni/C significantly decreased the dehydrogenation temperature and dramatically improved the dehydrogenation kinetics of LiAlH 4 . It was found that the LiAlH 4 sample with 10 wt % Ni/C (LiAlH 4 ‐10 wt %Ni/C) began hydrogen desorption at approximately 48 °C, which is very close to ambient temperature. Approximately 6.3 wt % H 2 was released from LiAlH 4 ‐10 wt %Ni/C within 60 min at 140 °C, whereas pristine LiAlH 4 only released 0.52 wt % H 2 under identical conditions. More importantly, the dehydrogenated products can partially rehydrogenate at 300 °C under 4 MPa H 2 . The synergetic effect of the flower‐like carbon substrate and Ni active species contributes to the significantly reduced dehydrogenation temperatures and improved kinetics.
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