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Examination of synthesis conditions for graphite-derived nanoporous carbon-silica composites

机译:石墨衍生纳米多孔碳二氧化硅复合材料的合成条件研究

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摘要

A soft chemical method was used to insert silica bridging species between the layers of a graphite oxide precursor to form nanoporous graphitic composites (NPGC) and the effect of various synthetic conditions including colloidal dispersion, interlayer pre-expansion, and hydrolysis of silica source on the pore formation of NPGC was examined. It was found that an optimal alkali concentration for GO dispersion and surfactant concentration for pre-expansion exists for obtaining NPGC with very high porosity. Water content in surfac-tant-pre-expanded GO and the tetraethoxysilane hydrolyzing time and temperature influence the porosities of NPGC. The pore formation mechanism of NPGC is discussed based on these examinations, indicating the important roles of those conditions giving higher Si content and good composition state of carbon layers and silica in NPGC porosities.
机译:采用软化学方法在氧化石墨前驱体层间插入二氧化硅桥接物质,形成纳米多孔石墨复合材料(NPGC),并考察了胶体分散、层间预膨胀、二氧化硅源水解等各种合成条件对NPGC孔隙形成的影响。结果表明,GO分散体的最佳碱浓度和预膨胀的表面活性剂浓度对于获得具有极高孔隙率的NPGC存在。表面预膨胀GO中的含水量和四乙氧基硅烷的水解时间和温度对NPGC的孔隙率有影响。基于这些研究,讨论了NPGC的孔隙形成机理,表明了这些条件在NPGC孔隙中赋予较高的Si含量和良好的碳层和二氧化硅组成状态的重要作用。

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