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Synthesis and characterization of electrical conducting porous carbon structures based on resorcinol-formaldehyde

机译:基于间苯二酚-甲醛的导电多孔碳结构的合成与表征

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Electrical conducting carbon (ECC) porous structures were explored by changing the pyrolysis temperature of organic xerogel compounds prepared by sol-gel method from resorcinol-formaldehyde (RF) mixtures in acetone using picric acid as catalyst. The effect of this preparation parameter on the structural and electrical properties of the obtained ECCs was studied. The analysis of the obtained results revealed that the polymeric insulating xerogel phase was transformed progressively with pyrolysis temperature into carbon conducting phase; this means the formation of long continuous conducting path for charge carriers to move inside the structure with thermal treatment and the samples exhibited tangible percolation behaviour where the percolation threshold can be determined by pyrolysis temperature. The temperature-dependent conductivity of the obtained ECC structures shows a semiconducting behaviour and the I(V) characteristics present a negative differential resistance. The results obtained from STM micrographs revealed that the obtained ECC structures consist of porous electrical conducting carbon materials.
机译:通过使用苦味酸作为催化剂,通过改变丙酮与间苯二酚-甲醛(RF)混合物中溶胶-凝胶法制备的有机干凝胶化合物的热解温度,探索了导电碳(ECC)多孔结构。研究了该制备参数对所得ECC的结构和电性能的影响。对所得结果的分析表明,聚合物绝缘干凝胶相在热解温度下逐渐转变为碳导电相;这意味着形成长的连续导电路径,使电荷载流子通过热处理在结构内部移动,并且样品表现出明显的渗滤行为,其中渗滤阈值可以通过热解温度确定。所获得的ECC结构的随温度变化的电导率显示出半导体行为,并且I(V)特性呈现出负的差分电阻。从STM显微照片获得的结果表明,所获得的ECC结构由多孔导电碳材料组成。

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