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首页> 外文期刊>Low temperature physics: Simultaneous Russian - English publication >A first principle study of structural and electrical properties of novel Li2FeO3/Li2FeO2F Li-ion battery cathode material
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A first principle study of structural and electrical properties of novel Li2FeO3/Li2FeO2F Li-ion battery cathode material

机译:新型Li2FeO3/Li2FeO2F锂离子电池正极材料结构与电学性能的第一性原理研究

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摘要

Li-ion battery cathode materials, namely Li2FeO3 and Li2FeO2F, are investigated using noble evaluation approaches for the electrical properties, assuming that the reacted-unreacted structure interface is acting as a semiconductor junction. The evaluations are done by calculating different methods of density functional theory, and consequently resulted in lattice parameters and their changes, structural properties, and also density of states (DOS) diagrams to assess electrical properties. The approach assigns a value for each evaluated cathode material and provides a semi-quantitative criterion in the matter of rate-capability for having a comparison between the materials. It also considers the configuration of the unreacted-reacted structures with respect to each other and also the electric field direction simultaneously. Results from structural data showed that evaluated cathode materials face a significant amount of cell volume decrease during the delithiation process, thus it is expected that it has a strong impact on their cyclability and lifetime. According to the rate-capability criterion values obtained from the DOS diagrams calculated via GGA+U and GGA, results show that the presence of the Fluorine element inside the structure can improve the rate-capability.
机译:锂离子电池阴极材料,即Li2FeO3使用高贵和Li2FeO2F调查电评价方法属性,假设reacted-unreacted接口是作为半导体结构结。不同的密度泛函理论方法,因此导致了晶格参数和他们的变化,结构特性,和态密度(DOS)图来评估电气性能。为每个评估阴极材料和价值提供了一个在半定量标准因为比较rate-capability问题之间的材料。unreacted-reacted结构的配置彼此还有电同时磁场方向。结构数据显示,评价阴极材料面临大量的细胞体积减少delithiation过程中,因此预计有很强的影响cyclability和一生。rate-capability准则值从DOS图计算通过GGA + U和GGA,结果表明,的存在氟元素的内部结构可以改善rate-capability。

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