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Recent advances in kinetic and thermodynamic regulation of magnesium hydride for hydrogen storage 被引量:3
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作者 Hang Yang Zhao Ding +8 位作者 Yu-Ting Li Shao-Yuan Li Ping-Keng Wu Quan-Hui Hou Yang Zheng Biao Gao Kai-Fu Huo wen-jia du Leon L.Shaw 《Rare Metals》 SCIE EI CAS CSCD 2023年第9期2906-2927,共22页
Developing safer and more efficient hydrogen storage technology is a pivotal step to realizing the hydrogen economy. Owing to the lightweight, high hydrogen storage density and abundant reserves, MgH_(2) has been wide... Developing safer and more efficient hydrogen storage technology is a pivotal step to realizing the hydrogen economy. Owing to the lightweight, high hydrogen storage density and abundant reserves, MgH_(2) has been widely studied as one of the most promising solidstate hydrogen storage materials. However, defects such as stable thermodynamics, sluggish kinetics and rapid capacity decay have seriously hindered its practical application. This article reviews recent advances in catalyst doping and nanostructures for improved kinetic performance of MgH_(2)/Mg systems for hydrogen release/absorption, the tuning of their thermodynamic stability properties by alloying and reactant destabilization, and the dual thermodynamic and kinetic optimization of the MgH_(2)/Mg system achieved by nanoconfinement with in situ catalysis and ball milling with in situ aerosol spraying, aiming to open new perspectives for the scale-up of MgH_(2) for hydrogen storage applications. 展开更多
关键词 Magnesium hydride THERMODYNAMICS KINETICS Hydrogen storage
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