化学
氢化物
镧
活化能
电导率
氧气
热传导
分析化学(期刊)
反应性(心理学)
离子
无机化学
导电体
物理化学
金属
热力学
材料科学
有机化学
医学
物理
替代医学
病理
复合材料
作者
Keiga Fukui,Soshi Iimura,Albert M Iskandarov,Tomofumi Tada,Hideo Hosono
摘要
The hydride ion (H-) is a unique anionic species that exhibits high reactivity and chemical energy. H- conductors are key materials to utilize advantages of H- for applications, such as chemical reactors and energy storage systems. However, low H- conductivity at room temperature (RT) in current H- conductors limit their applications. In this study, we report a H- conductivity of ∼1 mS cm-1 at RT, which is higher by 3 orders of magnitude than that of the best conductor, in lightly oxygen-doped lanthanum hydride, LaH3-2xOx with x < 0.25. The oxygen concentration (x) is crucial in achieving fast H- conduction near RT; the low activation barrier of 0.3-0.4 eV is attained for x < 0.25, above which it increases to 1.2-1.3 eV. Molecular dynamics simulations using neural-network potential successfully reproduced the observed activation energy, revealing the presence of mobile and immobile H-.
科研通智能强力驱动
Strongly Powered by AbleSci AI