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The Synthesis of High-Surface Area Silicon Carbide by Conversion Method Using Carbosilane Polymer

机译:用碳硅烷聚合物的转化方法合成高表面积碳化硅

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Since mesoporous silica such as MCM-41 and SBA-15 was developed, the study of the properties of high-surface area materials was accelerated. Moreover, the mesoporous silica is used as a template to produce high-surface materials by nano casting technology. The purpose of this paper is the synthesis of a high surface silicon carbide sphere by the nano casting technology. In this study, KCC-1 silica sphere was used as a template, and polycarbosilane and poly(phenyl carbosilane) were selected for precursor of silicon carbide. Carbosilane polymer gives advantage of synthesis silicon carbide under low temperature, and hollow spheres were produced. In this study, the polycarbosilane was more effective for the synthesis of SiC hollow spheres by inversion of template structure showing a fibrous morphology on the sphere wall. And it was confirmed that the sphere was composed of nano sized SiC crystals, and has high surface area using TEM, XRD and BET analysis.
机译:由于开发了介孔二氧化硅,例如MCM-41和SBA-15,因此加速了高表面积材料的性能的研究。此外,中孔二氧化硅用作模板以通过纳米铸造技术生产高表面材料。本文的目的是通过纳米铸造技术合成高表面碳化硅球。在该研究中,使用KCC-1二氧化硅球作为模板,并选择聚氨基硅烷和聚(苯基碳硅烷)用于碳化硅前体。碳硅烷聚合物在低温下赋予合成碳化硅的优势,并制备了中空球。在这项研究中,通过模板结构的反演显示球形结构的纤维形态的模板结构更有效地对SiC中空球的合成更有效。并且证实球体由纳米大小的SiC晶体组成,并且使用TEM,XRD和BET分析具有高表面积。

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