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Improved dehydriding property of polyvinylpyrrolidone coated Mg-Ni hydrogen storage nano-composite prepared by hydriding combustion synthesis and wet mechanical milling
Authors:Linglong Yao  Huihui Han  Yana Liu  Yunfeng Zhu  Yao Zhang and Liquan Li
Institution:1. College of Materials Science and Engineering, Nanjing Tech University, 5 Xinmofan Road, Nanjing 210009, China;2. Jiangsu Collaborative Innovation Center for Advanced Inorganic Function Composites, Nanjing Tech University, Nanjing 210009, China;3. School of Materials Science and Engineering, Southeast University, Nanjing 211189, China
Abstract:In this work, polyvinylpyrrolidone (PVP) coated Mg95Ni5 nano-composites were prepared by hydriding combustion synthesis (HCS) plus wet mechanical milling (WM) with tetrahydrofuran (THF) and donated as WM-x wt% PVP (x = 1, 3, 5 and 7) respectively. The phase compositions, microstructures and dehydriding property, as well as the co-effect of PVP and THF were investigated in detail. XRD results showed that the average crystal size of MgH2 in the milled Mg95Ni5 decreased from 23?nm without PVP to 18?nm with 1?wt% PVP. The peak temperature of dehydrogenation of MgH2 in the milled Mg95Ni5 decreased from 293.0?°C without THF to 250.4?°C with THF. The apparent activation energy for decomposition of MgH2 in WM-7?wt% PVP was estimated to be 66.94?kJ/mol, which is 37.70?kJ/mol lower than that of milled Mg95Ni5 without THF and PVP. PVP and THF can facilitate the refinement of particle size during mechanical milling process. Attributed to small particle sizes and synergistic effect of PVP and THF, the composites exhibit markedly improved dehydriding properties.
Keywords:Mg-Ni-PVP  Composite  Mg-based alloy  Wet mechanical milling  Dehydriding temperature
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