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Synthesis of Porous and Mechanically Compliant Carbon Aerogels Using Conductive and Structural Additives

机译:使用导电和结构添加剂合成多孔和机械相容的碳气凝胶

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We report the synthesis of conductive and mechanically compliant monolithic carbon aerogels prepared by sol-gel polycondensation of melamine-resorcinol-formaldehyde (MRF) mixtures by incorporating diatomite and carbon black additives. The resulting aerogels composites displayed a well-developed porous structure, confirming that the polymerization of the precursors is not impeded in the presence of either additive. The aerogels retained the porous structure after etching off the siliceous additive, indicating adequate cross-linking of the MRF reactants. However, the presence of diatomite caused a significant fall in the pore volumes, accompanied by coarsening of the average pore size (predominance of large mesopores and macropores). The diatomite also prevented structural shrinkage and deformation of the as-prepared monoliths upon densification by carbonization, even after removal of the siliceous framework. The rigid pristine aerogels became more flexible upon incorporation of the diatomite, favoring implementation of binderless monolithic aerogel electrodes.
机译:我们报告了通过结合硅藻土和炭黑添加剂的三聚氰胺-间苯二酚-甲醛(MRF)混合物的溶胶-凝胶缩聚反应制备的导电和机械相容的整体式碳气凝胶。所得的气凝胶复合材料显示出良好发展的多孔结构,证实在任何一种添加剂的存在下均不会阻碍前体的聚合。蚀刻掉硅质添加剂后,气凝胶保留了多孔结构,表明MRF反应物充分交联。然而,硅藻土的存在导致孔体积显着下降,同时伴随着平均孔径的粗化(大中孔和大孔占优势)。硅藻土还防止了碳化后致密化时所制备的整料的结构收缩和变形,甚至在除去硅质骨架之后也是如此。硬质原始气凝胶在掺入硅藻土后变得更加柔软,有利于实现无粘合剂的整体式气凝胶电极。

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