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High Temperature Stability of Silver Based Porous Nanocomposites for Electrochemical Devices

机译:用于电化学装置的银基多孔纳米复合材料的高温稳定性

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High temperature (>550°C) applications of silver based porous composites have been limited due to relatively low melting temperature (962°C) of Ag. Incorporation of oxide particles was demonstrated as an effective approach for stabilization of the porous Ag microstructures. This study aims developing an understanding based on the relationships between the properties of the incorporated YSZ (yttria-stabilized zirconia), the developed porous microstructures and the electrochemical response of their electrodes. Minimum degradation was observed with the composite microstructure based on comparable Ag and YSZ particle sizes. The results demonstrated that YSZ incorporation into Ag matrix can increase the stable application temperature to 800°C.
机译:由于Ag的相对低的熔融温度(962℃),高温(> 550℃)银基多孔复合材料的应用受到限制。掺入氧化物颗粒作为稳定多孔Ag微结构的有效方法。本研究旨在基于掺入的YSZ(亚基稳定的氧化锆)的性质与其电极的开发多孔微观结构和电化学响应之间的关系来发展理解。基于可比较的AG和YSZ颗粒尺寸,用复合微结构观察到最小劣化。结果表明,YSZ掺入Ag基质可以将稳定的应用温度增加到800℃。

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