论文标题
MGH $ _2 $从MUON研究中推断出的间隙氢的局部电子结构
Local electronic structure of interstitial hydrogen in MgH$_2$ inferred from muon study
论文作者
论文摘要
氢化镁作为固体氢(H)储存材料具有巨大的潜力,因为其高H储存能力为7.6 wt%。但是,其缓慢的氢化和脱氢动力学以及分解所需的300 $^\ Circ $ C的高温是对汽车等小规模应用的主要障碍。 MGH $ _2 $中间质H的局部电子结构是解决此问题的重要基本知识,该知识主要是基于密度功能理论(DFT)研究的。但是,很少进行实验研究来评估DFT计算的结果。因此,我们已将MUON(MU)作为伪H引入MGH $ _2 $中,并通过详细分析其电子和动力学性能来研究相应的间质H状态。结果,我们观察到了类似于宽氧化物中观察到的多个MU状态,并发现它们的电子状态可以归因于与供体/受体水平相关的放松兴奋的状态,该状态与最近提出的“ Ambipolarity模型”所预测的供体/受体水平相关。这为模型通过供体/受体级别的DFT计算提供了间接支持。 MUON结果对改善氢动力学的一个重要含义是,脱氢是氢化物的$减少$,可以稳定间隙H $^ - $状态。
Magnesium hydride has great potential as a solid hydrogen (H) storage material because of its high H storage capacity of 7.6 wt%. However, its slow hydrogenation and dehydrogenation kinetics and the high temperature of 300 $^\circ$C required for decomposition are major obstacles to small-scale applications such as automobiles. The local electronic structure of interstitial H in MgH$_2$ is an important fundamental knowledge in solving this problem, which has been studied mainly based on density functional theory (DFT). However, few experimental studies have been performed to assess the results of DFT calculations. We have therefore introduced muon (Mu) as pseudo-H into MgH$_2$ and investigated the corresponding interstitial H states by analyzing their electronic and dynamical properties in detail. As a result, we observed multiple Mu states similar to those observed in wide-gap oxides, and found that their electronic states can be attributed to relaxed-excited states associated with donor/acceptor levels predicted by the recently proposed "ambipolarity model". This provides an indirect support for the DFT calculations on which the model is based via the donor/acceptor levels. An important implication of the muon results for improved hydrogen kinetics is that dehydrogenation, serving as a $reduction$ for hydrides, stabilizes the interstitial H$^-$ state.