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Low Dimensional String-like Relaxation Underpins Superionic Conduction in Fluorites and Related Structures

机译:低尺寸串状弛豫基于萤石和相关结构中的外阴导通

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Among the superionic conductors that show a Faraday transition – the continuous increase in the ionic conductivity over a range of temperatures – the fluorite structures have enjoyed incisive examinations over the past four decades; yet the fundamental nature of superionicity has remained largely inconclusive. Departing from the traditional quasi-static defect framework, we provide weighty evidence for string-like dynamical structures that govern the fast ion conduction process in fluorites. We show that lower temperatures encourage the growth of longer but slowly relaxing strings and vice-versa – a direct manifestation of heterogeneous dynamics. Remarkably, the ionic conductivity is inversely correlated to the lifetime of the ions that participate in the strings and not explicitly to the ion population. Our analysis methodology, which resolves a long-standing disagreement on defect structures and the mechanism of ionic transport in fcc fluorite structures, is well-positioned to describe the dynamics of low dimensional conduction in a larger class of superionic conductors.
机译:在显示法拉第转型的超前导体中 - 在一系列温度范围内的离子电导率连续增加 - 萤石结构在过去的四十年中均享有敏锐的考试;然而,超级性的基本性质仍然不确定。从传统的准静态缺陷框架中脱离,我们为弦乐的动态结构提供重量证据,用于控制萤石中的快速离子传导过程。我们表明较低的温度促使增长较长但缓慢放松的琴弦,反之亦然 - 异构动态的直接表现。值得注意的是,离子电导率与参与弦的离子的寿命与离子群没有明确的寿命相反。我们的分析方法,解决了对FCC萤石结构中的缺陷结构的长期分歧和离子运输机制,是良好的定位,以描述较大等级的超前导体中的低尺寸传导的动态。

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