双金属
催化作用
氢气储存
接口(物质)
氢
材料科学
化学工程
纳米技术
化学
冶金
复合材料
生物化学
工程类
有机化学
毛细管数
毛细管作用
作者
Junqi Qiu,Ying Yang,Haiyi Wan,Shixin Sun,Yu’an Chen,Fusheng Pan
标识
DOI:10.1021/acs.jpclett.5c01248
摘要
Improving the low temperature hydrogen storage kinetics of Mg-based alloys is challenging due to the antagonistic effects of elements on hydrogen dissociation and diffusion during hydrogen absorption/desorption critically determining the hydrogen storage properties of materials, but the synergistic catalytic effect of different elements offers a promising way to address these issues. This study fabricated TiV alloy through high-energy ball milling and subsequently integrated them with Mg-Ni to establish a multiphase composite system for enhanced hydrogen storage applications. Through systematic characterization, we elucidated the synergistic interactions between hydrogenophilic (Ti/V) and hydrogen-repellent elements (Ni) in regulating hydrogenation thermodynamics and kinetics. The TiV-modified Mg-20Ni composite exhibited accelerated dehydrogenation kinetics, achieving 3.0 wt % hydrogen desorption within 40 min at 225 °C. Differential scanning calorimetry (DSC) analysis revealed a reduced desorption activation energy of 82.0 kJ/mol for the TiV-containing composite, representing a sharp decrease compared with the baseline Mg-20Ni system. The enhanced sorption kinetics might originate from TiV-catalyzed Mg-H bond destabilization and asymmetric hydride phase transformations during hydrogen cycling.
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