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首页> 外文期刊>Beilstein Journal of Nanotechnology >Preparation of thick silica coatings on carbon fibers with fine-structured silica nanotubes induced by a self-assembly process
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Preparation of thick silica coatings on carbon fibers with fine-structured silica nanotubes induced by a self-assembly process

机译:通过自组装过程在碳纤维上制备具有精细结构的二氧化硅纳米管的厚二氧化硅涂层

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A facile method to coat carbon fibers with a silica shell is presented in this work. By immobilizing linear polyamines on the carbon fiber surface, the high catalytic activity of polyamines in the sol–gel-processing of silica precursors is used to deposit a silica coating directly on the fiber’s surface. The surface localization of the catalyst is achieved either by attaching short-chain polyamines (e.g., tetraethylenepentamine) via covalent bonds to the carbon fiber surface or by depositing long-chain polyamines (e.g., linear poly(ethylenimine)) on the carbon fiber by weak non-covalent bonding. The long-chain polyamine self-assembles onto the carbon fiber substrate in the form of nanoscopic crystallites, which serve as a template for the subsequent silica deposition. The silicification at close to neutral pH is spatially restricted to the localized polyamine and consequently to the fiber surface. In case of the linear poly(ethylenimine), silica shells of several micrometers in thickness can be obtained and their morphology is easily controlled by a considerable number of synthesis parameters. A unique feature is the hierarchical biomimetic structure of the silica coating which surrounds the embedded carbon fiber by fibrillar and interconnected silica fine-structures. The high surface area of the nanostructured composite fiber may be exploited for catalytic applications and adsorption purposes.
机译:这项工作提出了一种用二氧化硅壳包覆碳纤维的简便方法。通过将线性多胺固定在碳纤维表面上,多胺在二氧化硅前体的溶胶-凝胶加工中具有很高的催化活性,可将二氧化硅涂层直接沉积在纤维表面上。催化剂的表面定位可以通过将短链多胺(例如四亚乙基五胺)通过共价键连接到碳纤维表面上,或者通过将长链多胺(例如线性聚(亚乙基亚胺))通过弱沉积在碳纤维上来实现。非共价键。长链多胺以纳米微晶的形式自组装到碳纤维基材上,该微晶充当随后的二氧化硅沉积的模​​板。在接近中性pH值的条件下,硅化作用在空间上局限于局部多胺,因此在纤维表面上受到限制。在线性聚(亚乙基亚胺)的情况下,可以获得几微米厚的二氧化硅壳,并且其形态容易通过大量的合成参数来控制。二氧化硅涂层的独特仿生结构是分层的仿生结构,该结构通过原纤状和相互连接的二氧化硅精细结构包围了嵌入的碳纤维。纳米结构复合纤维的高表面积可用于催化应用和吸附目的。

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