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Silica plates as precursor for nano-structured materials

机译:二氧化硅板作为纳米结构材料的前体

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Phyllosilicate clays are assemblies of nano-plates of silicate with the dimension of height to length being 1 : 100 nm or more. The preferential face-to-face stacking of these silicate plates via van der Waals forces leads to formation of lamellar, layered structures. The exfoliated (delaminated) structures of these lamellar clays offer advantages as precursor for formation of nano-structured materials. Various chemical treatments of the clays have resulted in the formation of delaminated, nano-plates of silicate (Si-O-M) or silica (Si-O-Si), which were incorporated in a polymer or dispersed in a liquid phase [1,2]. We present the results for formation of the delaminated, nano-plates of silica using an alternative, one-step treatment of these clays by an aqueous solution of acidic polymers. Experiments were carried out for the mixtures containing approximately 1% weight phyllosilicate in 5% aqueous solution of poly(acrylic acid) at different temperatures. X-ray diffraction and photoemission spectroscopy measurements for the solid products recovered after stirring the mixtures at 20°Cshowed that the fully extended chains of poly(acrylic acid) were intercalated within the interlayer spaces between the silicate plates of the clays. At 85°C, however, the clays were exfoliated. Photoemission spectroscopy and Fourier transform infrared spectroscopy indicated that the exfoliated structures were primarily consisted of silica nano-plates. These results further indicated that the silica plates are virtually free from impurities including polymeric residues.
机译:硅酸盐硅酸盐是硅酸盐的纳米板的组件,其高度的尺寸为1:100nm以上。通过范德瓦尔斯力的这些硅酸盐板的优先面对面堆叠导致形成层状结构的层状结构。这些层状粘土的剥蚀(分层)结构提供了作为形成纳米结构材料的前体的优点。粘土的各种化学处理导致形成分层的硅酸盐(Si-OM)或二氧化硅(Si-O-Si),其掺入聚合物中或分散在液相中[1,2 ]。我们使用酸性聚合物的水溶液,使用替代的一步处理这些粘土的替代,一步处理这些粘土形成分层的二氧化硅的结果。对不同温度下的5%聚(丙烯酸)中的5%水溶液中的混合物进行实验。 X射线衍射和光学激光光谱测量和光学激散光谱测量在搅拌20°的混合物后回收的固体产物的测量结果,使得聚(丙烯酸)的完全延伸的链在粘土的硅酸盐板之间的层间空间内嵌入。然而,在85℃下,粘土被剥离。光学激散光谱和傅里叶变换红外光谱表明,剥落的结构主要由二氧化硅纳米板组成。这些结果进一步表明二氧化硅板实际上没有包括聚合物残基的杂质。

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