...
首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Lithium Conductivity and Meyer-Neldel Rule in Li3PO4-Li3VO4-Li4GeO4 Lithium Superionic Conductors
【24h】

Lithium Conductivity and Meyer-Neldel Rule in Li3PO4-Li3VO4-Li4GeO4 Lithium Superionic Conductors

机译:Li3PO4-Li3VO4-Li4GeO4锂硬离子导线的锂电导率和Meyer-Neldel规则

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The ionic conductivity and activation energy of lithium in the Li3PO4-Li3VO4-Li4GeO4 system was systematically investigated. The sharp decrease in activation energy upon Ge substitution in Li3PO4 and Li3VO4 was attributed to the reduction in the defect formation energy while the variation in activation energy upon increasing Ge content was rationalized in term of the inductive effect. We also found a correlation between the pre-exponential factors and the activation energies in agreement with the well-known Meyer-Neldel rule. The series of compound with and without partial lithium occupancy were shown to fall into two distinct lines. The slope of the line was found to be related to the inverse of the energy scale associated with phonons in the system, which agrees with the multiexcitation entropy theory. The intercept of the line was found to be related to the Gibbs free energy of defect formation. Compiled data of pre-exponential factor and activation energy for commonly studied lithium-ion conductors shows that this correlation is very general, implying an unfavorable trade-off between high pre-exponential factor and low activation energy needed to achieve high ionic conductivity. Understanding the circumstances under which this correlation can be violated might provide a new opportunity to further increase the ionic conductivity in lithium-ion conductors.
机译:在Li3PO4-的Li3VO4-Li4GeO4系统锂的离子电导率和活化能了系统的研究。在Li3PO4和Li3VO4中Ge取代时激活能量的急剧降低归因于缺陷形成能量的降低,而在增加GE含量时激活能量的变化是在感应效果的术语中合理的。我们还发现了与众所周知的Meyer-neldel规则同意的预指数因素与激活能之间的相关性。显示出具有和不含部分锂占用的一系列化合物落入两个不同的线。发现该线的斜率与系统中的声子相关的能量规模的倒数相关,这与多血管熵理论一致。发现该线的截距与缺陷形成的GIBBS自由能有关。用于常见研究锂离子导体的预指数因子和激活能量的编译数据表明,这种相关性是非常一般的,这意味着在高预算系数和实现高离子电导率所需的低激活能量之间的不利折衷。了解可以侵犯这种相关性的情况可能提供了进一步提高锂离子导体中的离子电导率的新机会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号