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Electrically conductive porous alumina/graphite composite synthesized by starch consolidation with reductive sintering

机译:淀粉固结还原烧结合成导电多孔氧化铝/石墨复合材料

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摘要

This paper reports a facile and environment-friendly process to synthesize electrically conductive porous alumina/graphite composites by starch consolidation technique followed by reductive sintering. Green ceramic composites were consolidated with different starches and sintered at different temperatures in an argon atmosphere. Electrical measurements, carbon contents and; Raman analyses of carbon structures determined an optimal sintering temperature of 1700 °C, which lead to a uniform formation of conductive graphitic networks at an optimal concentration of about 3.8 vol% in the porous composites. These carbon networks resulted into porous composited Having high electrical conductivities measured in the range from 3 to 7 S/cm, which depended on the starch types and their porous properties. Correspondingly, the bulk porosities of the sintered composites were measured from 42 to 46%, with rounded micropores having diameters ranging from 14 to 39 μm. These porous properties of the sintered composites offer promising applications for conductive membrane and porous electrode
机译:本文报道了一种通过淀粉固结技术然后还原烧结来合成导电多孔氧化铝/石墨复合材料的简便,环保的工艺。绿色陶瓷复合材料用不同的淀粉固结,并在氩气气氛中在不同温度下烧结。电气测量,碳含量和碳结构的拉曼分析确定了1700°C的最佳烧结温度,这导致在多孔复合材料中以约3.8 vol%的最佳浓度均匀地形成导电石墨网络。这些碳网络导致多孔复合材料具有高电导率,在3至7 S / cm的范围内测量,这取决于淀粉的类型及其多孔性。相应地,测得的烧结复合材料的整体孔隙率为42-46%,圆形微孔的直径为14-39μm。烧结复合材料的这些多孔性质为导电膜和多孔电极提供了有希望的应用

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