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纳米尺度固体电解质薄膜中界面处的弹性应变及其对离子电导率的影响——理论思考与实验研究

Elastic strain at interfaces and its influence on ionic conductivity in nanoscaled solid electrolyte thin films--theoretical considerations and experimental studies.

作者信息

Schichtel N, Korte C, Hesse D, Janek J

机构信息

Physikalisch-Chemisches Institut, Justus-Liebig-Universität Giessen, Heinrich-Buff-Ring 58, D-35392, Giessen, Germany.

出版信息

Phys Chem Chem Phys. 2009 May 7;11(17):3043-8. doi: 10.1039/b900148d. Epub 2009 Mar 20.

DOI:10.1039/b900148d
PMID:19370197
Abstract

Ionic transport in solids parallel to grain or phase boundaries is usually strongly enhanced compared to the bulk. Transport perpendicular to an interface (across an interface) is often much slower. Therefore in modern micro- and nanoscaled devices, a severe influence on the ionic/atomic transport properties can be expected due to the high density of interfaces.Transport processes in boundaries of ionic materials are still not understood on an atomic scale. In most of the studies on ionic materials the interfacial transport properties are explained by the influence of space charge regions. Here we discuss the influence of interfacial strain at semicoherent or coherent heterophase boundaries on ionic transport along these interfaces in ionic materials. A qualitative model is introduced for (untilted and untwisted) hetero phase boundaries. For experimental verification, the interfacial oxygen ionic conductivity of different multilayer systems consisting of cubic ZrO(2) stabilised by aliovalent dopands (YSZ, CSZ) and an insulating oxide is investigated as a function of structural mismatch. Recent results on extremely fast ionic conduction in YSZ/SrTiO(3) thin film systems ("colossal ionic concuctivity at interfaces") is discussed from the viewpoint of strain effects.

摘要

与体相相比,固体中平行于晶粒或相界的离子传输通常会显著增强。垂直于界面(穿过界面)的传输往往要慢得多。因此,在现代微纳尺度器件中,由于界面密度高,预计会对离子/原子传输特性产生严重影响。离子材料界面处的传输过程在原子尺度上仍未被理解。在大多数关于离子材料的研究中,界面传输特性是通过空间电荷区的影响来解释的。在这里,我们讨论半共格或共格异相界处的界面应变对离子材料中沿这些界面的离子传输的影响。针对(无倾斜和无扭转的)异相界引入了一个定性模型。为了进行实验验证,研究了由异价掺杂剂(YSZ、CSZ)稳定的立方ZrO(2)和一种绝缘氧化物组成的不同多层系统的界面氧离子电导率与结构失配的关系。从应变效应的角度讨论了YSZ/SrTiO(3)薄膜系统中极快速离子传导的最新结果(“界面处的巨离子电导率”)。

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