脱氢
铑
氢气储存
材料科学
从头算
分解
结晶学
密度泛函理论
原子物理学
氢
物理化学
热力学
物理
催化作用
计算化学
化学
量子力学
有机化学
作者
Ziji Shao,Defang Duan,Liyuan Wang,Hao Song,Hongyu Yu,Yansun Yao,Tian Cui
出处
期刊:Physical review
日期:2021-08-10
卷期号:104 (5)
被引量:5
标识
DOI:10.1103/physrevb.104.054110
摘要
Hydrogen-rich compounds are being extensively explored theoretically and experimentally as potential hydrogen storage materials. In this work, we predicted a hydrogen-rich compound rhodium trihydride ($\mathrm{Rh}{\mathrm{H}}_{3}$) with a high volumetric hydrogen density of 212.5 g/L by means of ab initio calculations. The $\mathrm{Rh}{\mathrm{H}}_{3}$ with Pnma symmetry is thermodynamically stable and accessible through synthesis above 40 GPa. The compound is dynamically and mechanically stable at ambient pressure. Further calculation suggests a probable dehydrogenation temperature ${T}_{\mathrm{des}}$ of $65{\phantom{\rule{0.16em}{0ex}}}^{\ensuremath{\circ}}\mathrm{C}$ at ambient pressure with decomposition route to $\mathrm{Rh}+{\mathrm{H}}_{2}$. High volumetric hydrogen density and moderate dehydrogenation temperature place $\mathrm{Rh}{\mathrm{H}}_{3}$ as one of the best hydrogen storage materials. Our work encourages the experimental synthesis of $\mathrm{Rh}{\mathrm{H}}_{3}$ at high pressure.
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