首页> 外文期刊>Journal of electroceramics >Electrical conductivity studies of AgCl:KCl(RbCl, CsCl) composites and a novel method of obtaining highly porous materials
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Electrical conductivity studies of AgCl:KCl(RbCl, CsCl) composites and a novel method of obtaining highly porous materials

机译:ACCL的电导率研究:KCl(RBCL,CSCL)复合材料及其获得高孔材料的新方法

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摘要

Two phase systems consisting of AgCl and KCl (or RbCl, CsCl) have been studied with respect to morphology and electrical properties. As expected from the contact of such Frenkel and Schottky disordered ionic conductors, substantial enhancement effects were not observed. In the case of AgCl:KCl, eutectic lamellar structures have been obtained and their conductivities measured using both macroscopic electrodes as well as microelectrodes. Leaching the alkali chloride out of the lamellar composite leads to a porous solid network. Potential applications of such microporous ionic silver halides as a gas sensor as well as a solid envelope for liquid electrolytes are considered.
机译:已经研究了由AgCl和KCl(或RBCL,CSCL)组成的两种阶段系统,相对于形态和电性能研究。 从这种Frenkel和肖特基无序离子导线的接触期望,未观察到显着的增强效果。 在ACCL:KCl的情况下,已经获得了共晶层结构,并使用宏观电极以及微电极测量的导电性。 将碱金属氯浸出到层状复合材料中导致多孔固体网络。 认为这种微孔离子卤化物作为气体传感器的潜在应用以及用于液体电解质的固体外壳。

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