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首页> 外文期刊>Journal of the European Ceramic Society >Phenomenological understanding of flash sintering in MnCo2O4
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Phenomenological understanding of flash sintering in MnCo2O4

机译:MnCo2O4中闪光烧结的现象学理解

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The dual role of electric field in the flash sintering process of conducting MnCo2O4 is demonstrated. The flash and conventionally sintered MnCo2O4 samples produced at different temperatures are characterized using energy dispersive X-ray and micro-Raman spectroscopy to elucidate the micro-level spatial distribution of evolved phases. Raman signal mapping over the two ways sintered samples exposes differently grown areas of cobalt oxide based secondary phase. Electrical conductivity of conventionally sintered sample is recorded as a function of temperature and E-field and is utilized to discover the charge carrier activation mechanism during the flash effect. The conductivity before the flash-onset is shown to be comparable to that occurs by Poole-Frenkel effect and Phonon-assisted tunneling i.e. by the mechanism that occurs before the dielectric breakdown of semiconductors and insulators. The observed results, finally, confirm that catalyst like drift action of E-field on cobalt oxide formation is responsible for enhancement in the flash-sintering.
机译:证明了电场在导电MNCO2O4的闪光烧结过程中的双重作用。在不同温度下产生的闪光和常规烧结的MNCO2O4样品使用能量分散X射线和微拉曼光谱表征,以阐明进化阶段的微级空间分布。随着两种方式的拉曼信号映射烧结样品暴露不同生长的基于氧化钴的二相区域。将常规烧结样品的导电性记录为温度和E场的函数,并且用于在闪光效果期间发现电荷载体激活机构。在闪光灯开始之前的电导率被示出与普罗弗雷克尔效应和声子辅助隧道I.e.e.E.通过在半导体和绝缘体的介电击穿之前发生的机制。所观察到的结果最后,确认催化剂如氧化钴氧化物形成上的E场的漂移作用是负责闪蒸烧结中的增强。

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