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首页> 外文期刊>Bulletin of Materials Science >Energy landscapes for mobile ions in ion conducting solids
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Energy landscapes for mobile ions in ion conducting solids

机译:离子传导固体中移动离子的能态图

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Structure property function relationships provide valuable guidelines in the systematic development of advanced functional materials with tailored properties. It is demonstrated that an augmented bond valence approach can be effectively used to establish such relationships for solid electrolytes. A bond valence analysis of local structure models for disordered systems or interfaces based on reverse Monte Carlo (RMC) fits or molecular dynamics (MD) simulations yields quantitative predictions of the ion transport characteristics. As demonstrated here for a range of metaphosphate and diborate glasses, the complete description of the energy landscape for mobile ions also provides an effective tool for achieving a more detailed understanding of ion transport in glasses. The investigation of time evolutions can be included, if the bond valence analysis is based on MD trajectories. In principle, this allows quantifying the time and temperature dependence of pathway characteristics, provided that a suitable empirical force-field is available. For the example of LiPO_3, the remaining differences between simulated and experimental structures are investigated and a compensation method is discussed.
机译:结构属性功能关系为具有定制属性的高级功能材料的系统开发提供了宝贵的指导。已经证明,增强键合价方法可以有效地用于建立固体电解质的这种关系。基于反向蒙特卡洛(RMC)拟合或分子动力学(MD)模拟的无序系统或界面局部结构模型的键合价分析可得出离子迁移特征的定量预测。如此处针对一系列偏磷酸盐和二硼酸盐玻璃所展示的,对移动离子能量分布的完整描述也提供了一种有效的工具,可实现对玻璃中离子传输的更详细的了解。如果键价分析基于MD轨迹,则可以包括时间演化的研究。原则上,如果可以使用合适的经验力场,则可以量化路径特性的时间和温度依赖性。以LiPO_3为例,研究了模拟结构和实验结构之间的剩余差异,并讨论了补偿方法。

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