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Investigation of proton conducting BaZr_(0.9)Y_(0.1)O_(2.95):BaCe_(0.9)Y_(0.1)O_(2.95)core-shell structures

机译:质子传导BaZr_(0.9)Y_(0.1)O_(2.95):BaCe_(0.9)Y_(0.1)O_(2.95)核-壳结构的研究

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摘要

Barium zirconate shows better chemical and mechanical stability than the corresponding cerate,but lower protonic conductivity largely due to resistive grain boundary contributions.In this work we attempted to reduce the grain boundary resistance of BaZr_(0.9)Y_(0.1)O_(2.95)starting from a core-shell modification of its grain with a thin film of BaCe_(0.9)Y_(0.1)O_(2.95).The resultant core-shell material was characterised by X-ray powder diffraction(XRD),thermal gravimetric analysis(TGA)and scanning electron microscopy(SEM).Impedance spectroscopy performed on the material in wet 5% H_2/Ar atmosphere showed a significant reduction in terms of both bulk and grain boundary resistances of the initial barium zirconate when modified with a thin film of barium cerate.As by thin films modification the total conductivity of the sample increases by about one order of magnitude,this surface modification concept appears to be a promising way to control the grain boundary properties for a given material.
机译:锆酸钡具有比相应的铈酸盐更好的化学和机械稳定性,但是由于电阻性晶界的贡献,质子传导率较低。在这项工作中,我们试图降低BaZr_(0.9)Y_(0.1)O_(2.95)的晶界电阻由BaCe_(0.9)Y_(0.1)O_(2.95)薄膜对其核壳进行改性。所得的核壳材料通过X射线粉末衍射(XRD),热重分析(TGA)进行了表征。在湿5%H_2 / Ar气氛中对材料进行的阻抗谱显示,用铈酸钡薄膜改性后,初始锆酸钡的体积和晶界电阻均显着降低。由于通过薄膜改性,样品的总电导率增加了大约一个数量级,因此这种表面改性概念似乎是控制给定配合物的晶界特性的一种有前途的方法里亚尔。

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