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NiCo nanoalloy encapsulated in graphene layers for improving hydrogen storage properties of LiAlH4

机译:包覆在石墨烯层中的NiCo纳米合金可改善LiAlH4的储氢性能

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摘要

NiCo nanoalloy (4–6 nm) encapsulated in grapheme layers (NiCo@G) has been prepared by thermolysis of a 3D bimetallic complex CoCo[Ni(EDTA)]2·4H2O and successfully employed as a catalyst to improve the dehydrogenation performances of LiAlH4 by solid ball-milling. NiCo@G presents a superior catalytic effect on the dehydrogenation of LiAlH4. For LiAlH4 doped with 1 wt% NiCo@G (LiAlH4-1 wt% NiCo@G), the onset dehydrogenation temperature of LiAlH4 is as low as 43 °C, which is 109 °C lower than that of pristine LiAlH4. 7.3 wt% of hydrogen can be released from LiAlH4-1 wt% NiCo@G at 150 °C within 60 min. The activation energies of LiAlH4 dehydrogenation are extremely reduced by 1 wt% NiCo@G doping.
机译:通过对3D双金属配合物CoCo [Ni(EDTA)] 2·4H2O进行热解制备了包裹在石墨素层(NiCo @ G)中的NiCo纳米合金(4–6 nm),并成功地用作提高LiAlH4脱氢性能的催化剂通过实心球磨。 NiCo @ G对LiAlH4的脱氢具有优异的催化作用。对于掺有1%(重量)NiCo @ G(LiAlH4-1%(重量)NiCo @ G)的LiAlH4,LiAlH4的起始脱氢温度低至43°C,比原始的LiAlH4低109°C。在150 C下60分钟内,LiAlH4-1 wt%NiCo @ G可以释放7.3 wt%的氢。 LiAlH4脱氢的活化能因1%(重量)NiCo @ G掺杂而大大降低。

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