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Physicochemical and morphological properties of hydrated silicas precipitated following alkoxysilane surface modification

机译:烷氧基硅烷表面改性后沉淀的水合二氧化硅的理化和形态学性质

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Modified silicas were obtained by precipitation from aqueous solutions of sodium metasilicate and sulphuric acid. For the modification, silane coupling agents with various functional groups were applied, including aminosilane (AEAPTS), glycidoxysilane (GPTS), mercaptosilane (McPTS), and vinylsilane (VTMES). Extensive physicochemical evaluation of the obtained modified silicas was conducted, using FTIR, Si-29 CP MAS NMR and XPS techniques. The silica surface modification was proven to depend upon chemical reactions and to show intensity increasing with a rising concentration of a given modifier. A surface charge of the formed silica dispersions was also examined, by determining their zeta potential. Moreover, surface morphology, dispersion and particle size of the obtained silicas were evaluated, employing TEM electron microscopy and the technique of a dynamic light scattering (DLS). The studies demonstrated that application of hydrophobic type silanes for surface modification of the hydrated silicas restricted the intense tendency for agglomeration in the formed precipitated silicas. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 30]
机译:通过从偏硅酸钠和硫酸的水溶液中沉淀获得改性的二氧化硅。为了进行改性,使用了具有各种官能团的硅烷偶联剂,包括氨基硅烷(AEAPTS),环氧丙氧基硅烷(GPTS),巯基硅烷(McPTS)和乙烯基硅烷(VTMES)。使用FTIR,Si-29 CP MAS NMR和XPS技术对获得的改性二氧化硅进行了广泛的理化评估。事实证明,二氧化硅的表面改性取决于化学反应,并显示强度随给定改性剂浓度的增加而增加。通过确定它们的ζ电位,还检查了形成的二氧化硅分散体的表面电荷。此外,使用TEM电子显微镜和动态光散射(DLS)技术评价了所得二氧化硅的表面形态,分散性和粒径。研究表明,将疏水型硅烷用于水合二氧化硅的表面改性可以限制形成的沉淀二氧化硅中强烈的团聚趋势。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:30]

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