论文标题
Antiperovskite li $ _2 $ feso的阴离子偏置指导的短期订单
Anion-polarisation-directed short-range-order in antiperovskite Li$_2$FeSO
论文作者
论文摘要
阳离子隔离的阴极中的短距离顺序对其电化学特性产生重大影响。在这里,我们使用密度功能理论,蒙特卡洛模拟和同步X射线配对 - 分布功能数据来表征Antiperovskite阴极材料li $ _2 $ feso中的阳离子短距离。我们预测部分短距离阳离子订购,其特征是有利的OLI $ _4 $ fe $ _2 $氧气协调性,偏爱非polar cis-Oli $ _4 $ fe $ _2 $胜过非偏 - trans-oli $ _4 $ _4 $ _4 $ _4 $ _2 $ _2 $ _2 $配置。对极性阳离子构型的这种偏好与实验数据一致。预测的短阶偏好与简单的点芯模型形成鲜明对比,该模型相反,该模型预测了优先的trans-oli $ _4 $ fe $ _2 $氧气配位和相应的远程晶体学顺序。因此,在李$ _2 $ FESO中没有远程订单可以归因于顺式oli $ _4 $ _4 $ fe $ _2 $和其他非oli $ _4 $ _4 $ fe $ _2 $ oxygen-oxygen-co-oxygen-coroordination-coordination tobers的相对稳定性。我们表明,这种作用与极性配位环境中氧化物和硫化物阴离子的极化有关,这稳定了这些极性短距离阳离子顺序。我们建议在包含不同正式电荷的阳离子的其他杂项材料中可能存在类似的阴离子偏置指导的短距离订购。我们的分析还说明了使用简单的点芯模型来预测阳离子排序材料的结构的局限性,在这种情况下,其他因素(例如阴离子极化)可能在指导短期和长期结构相关性方面起关键作用。
Short-range ordering in cation-disordered cathodes can have a significant effect on their electrochemical properties. Here, we characterise the cation short-range order in the antiperovskite cathode material Li$_2$FeSO, using density functional theory, Monte Carlo simulations, and synchrotron X-ray pair-distribution-function data. We predict partial short-range cation-ordering, characterised by favourable OLi$_4$Fe$_2$ oxygen coordination with a preference for polar cis-OLi$_4$Fe$_2$ over non-polar trans-OLi$_4$Fe$_2$ configurations. This preference for polar cation configurations produces long-range disorder, in agreement with experimental data. The predicted short-range-order preference contrasts with that for a simple point-charge model, which instead predicts preferential trans-OLi$_4$Fe$_2$ oxygen coordination and corresponding long-range crystallographic order. The absence of long-range order in Li$_2$FeSO can therefore be attributed to the relative stability of cis-OLi$_4$Fe$_2$ and other non-OLi$_4$Fe$_2$ oxygen-coordination motifs. We show that this effect is associated with the polarisation of oxide and sulfide anions in polar coordination environments, which stabilises these polar short-range cation orderings. We propose similar anion-polarisation-directed short-range-ordering may be present in other heterocationic materials that contain cations with different formal charges. Our analysis also illustrates the limitations of using simple point-charge models to predict the structure of cation-disordered materials, where other factors, such as anion polarisation, may play a critical role in directing both short- and long-range structural correlations.