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首页> 外文期刊>Solid state ionics >Nanoprotonics in perovsikte-type oxides: Reversible changes in color and ion conductivity due to nanoionics phenomenon in platinum-containing perovskite oxide
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Nanoprotonics in perovsikte-type oxides: Reversible changes in color and ion conductivity due to nanoionics phenomenon in platinum-containing perovskite oxide

机译:Perovsikte型氧化物中的纳米质子学:由于含铂钙钛矿氧化物中的纳米离子现象,颜色和离子电导率可逆变化

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摘要

The ion conductivity of a solid-state material is primarily a function of its chemical composition and crystal structure. However, interfaces can play an important role in the conduction process. The effects of interfaces on ionic properties can be controlled on the basis of "nanoionics". In this study, we demonstrate a nanoionics phenomenon observed in a blue platinum-containing perovskite. The proton conductivity changed reversibly in response to the precipitation of platinum nanoparticles and oxidation to form a solid solution. The results of XAFS measurements, TEM analysis, and electron holography provide evidence of the nanoionics phenomenon, and suggest a possible underlying mechanism for the conductivity change caused by the small amount of precipitated platinum nanoparticles in the perovskite oxide.
机译:固态材料的离子电导率主要是其化学组成和晶体结构的函数。但是,界面可以在传导过程中发挥重要作用。界面对离子性质的影响可以基于“纳米离子”来控制。在这项研究中,我们证明了在蓝色的含铂钙钛矿中观察到的纳米离子现象。响应于铂纳米颗粒的沉淀和氧化形成固体溶液,质子传导性可逆地变化。 XAFS测量,TEM分析和电子全息术的结果提供了纳米离子现象的证据,并提出了由钙钛矿氧化物中少量沉淀的铂纳米颗粒引起的电导率变化的潜在潜在机理。

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