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Trivalent ion Conduction in The Scandium Tungstate-Type Structure

机译:钨ung型结构中的三价离子传导

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The realization of a trivalent ion conduction in solids was successful by selecting the sc_2(WO_4)_3-type structure from the consideration of the mobile trivalent cations and the structure which decreases the electrostatic interaction between the migrating trivalent ionic species ndthe framework structure as much as possible. Among the rare earth tungstates, Sc_2(WO_4)_3 was found to hold the most suitable size ofr hte trivalent ion migration in the rleation between the mobile ion isze and the lattice volume. The ion conducting characteristics ofrare earths were studied by means of both the polarization and dc elecgtrolysis techniques. The mobile species was demonstrated to be the trivalent ions in the Sc_2(WO_4)_3-type structure. By the dc electrolysis, the mobile ion species was definitely identified to be the trivalent ions in the Sc_2(WO_4)_3-type tungstates. IN addition, the demonstration of a macroscopic Al~(3+) ion conduction in the turgstate structure was directly accomplished.
机译:通过考虑可移动的三价阳离子和减少迁移的三价离子物种与骨架结构之间的静电相互作用的结构选择sc_2(WO_4)_3-型结构,成功实现了固体中三价离子传导的实现。可能。在稀土钨酸盐中,Sc_2(WO_4)_3被发现在三价离子迁移中具有最合适的大小,这是在可移动离子尺寸和晶格体积之间的关系中。利用极化技术和直流电解技术研究了稀土离子的导电特性。流动物种被证明是Sc_2(WO_4)_3-型结构中的三价离子。通过直流电解,可移动离子物种明确确定为Sc_2(WO_4)_3型钨酸盐中的三价离子。此外,直接完成了在拉伸态结构中宏观Al〜(3+)离子传导的演示。

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