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Fast ionic conduction in Na2S+B2S3 glasses: Compositional contributions to nonexponentiality in conductivity relaxation in the extreme low-alkali-metal limit

机译:Na2S + B2S3玻璃中的快速离子传导:在极低的碱金属极限下,对电导率弛豫非指数性的成分贡献

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摘要

The conductivity relaxation phenomenon in glassy and crystalline ionic conductors has been known for many years to be a highly nonexponential process. The stretched exponential function exp-(t/τ)β has been used with varying levels of success to describe this relaxation. Whether the nonexponentiality is due to parallel conducting processes acting independently of each other and having a distribution of relaxation times or to serial processes strongly coupling the ionically conducting species and constraining each other’s relaxation, the exact nature of this process is still unknown. If coupling is the active mechanism responsible for the nonexponentiality, then there should be a relationship between the extent of the nonexponentiality and the average ion separation distance; the greater the ion-ion separation, the smaller the coupling between the ions. To test this hypothesis, wide composition, frequency, and temperature range conductivity measurements have been performed on the fast-ion-conducting glass series, Na2S+B2S3. For x(Na2S)=0.001, the relaxation is nearly exponential. As the Na2S concentration increases, the estimated ion-ion separation distance decreases; so do both the dc conductivity activation energy and the β parameter in the stretched exponential. The β parameter, however, shows a much stronger dependence to the ion-ion separation distance. It is also found that for nearly all of the glasses studied to date, the composition dependencies of the β parameter can be cast onto a master plot of β versus average ion-ion separation distance. In this way, we provide a universal trend for the compositional dependence of the nonexponentiality in glass.
机译:多年来,已知玻璃态和结晶态离子导体中的电导率松弛现象是高度非指数过程。拉伸指数函数exp-(t /τ)β已被成功地描述为这种松弛程度。非指数性是由于彼此独立起作用并具有弛豫时间分布的平行导电过程,还是由于强烈耦合离子导电物质并限制彼此弛豫的串行过程,这一过程的确切性质仍然未知。如果耦合是导致非指数性的主动机制,则非指数性的程度与平均离子分离距离之间应存在关系;离子-离子分离越大,离子之间的耦合越小。为了验证该假设,已对快离子导电玻璃系列Na2S + B2S3进行了宽成分,频率和温度范围的电导率测量。对于x(Na 2 S)= 0.001,弛豫几乎是指数的。随着Na2S浓度的增加,估计的离子-离子分离距离减小;直流电导率活化能和拉伸指数中的β参数也是如此。但是,β参数显示出对离子-离子分离距离的依赖性强得多。还发现,对于迄今为止研究的几乎所有玻璃,β参数的成分依存关系都可以转换为β对平均离子-离子分离距离的主图。这样,我们为玻璃中非指数性的成分依赖性提供了一种普遍的趋势。

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