论文标题
基于拓扑图的固态离子迁移分析
Topological Graph-based Analysis of Solid-State Ion Migration
论文作者
论文摘要
为了加速新型离子传导材料的发展,我们提出了一个通用的图理论分析框架,用于任何晶体结构中的离子迁移。图的节点代表迁移离子的亚稳态位点,边缘表示相邻位点之间的离散迁移事件。从可能的亚稳定迁移站点的集合开始,该框架通过计算这些站点之间的单个迁移能层来为边缘分配重量。通过搜索周期性迁移图中的最低成本周期,可以确定与宏观离子迁移相对应的周期模拟单元中的连接途径。为了举例说明框架的实用性,我们介绍了在VO(PO4)不同多晶型物(PO4)中进行LI迁移的自动分析,从而鉴定出具有简单迁移途径的两个不同的晶体结构,表明总体<300 MEV迁移障碍。
To accelerate the development of novel ion-conducting materials, we present a general graph-theoretic analysis framework for ion migration in any crystalline structure. The nodes of the graph represent metastable sites of the migrating ion and the edges represent discrete migration events between adjacent sites. Starting from a collection of possible metastable migration sites, the framework assigns a weight to the edges by calculating the individual migration energy barriers between those sites. Connected pathways in the periodic simulation cell corresponding to macroscopic ion migration are identified by searching for the lowest-cost cycle in the periodic migration graph. To exemplify the utility of the framework, we present the automatic analyses of Li migration in different polymorphs of VO(PO4), with the resulting identification of two distinct crystal structures with simple migration pathways demonstrating overall < 300 meV migration barriers.