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Modification of the interlayer pore structure of silica iron oxide sol pillared clay using organic templates

机译:有机模板对氧化硅铁溶胶柱撑粘土层间孔结构的改性

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摘要

A novel route for modifying the interlayer pore structure of silica iron oxide sol particle pillared montmorillonite was proposed based on the post-intercalation of organic templates. The pristine mixed oxide sol pillared montmorillonite (SFM) was prepared by the reaction of Na-montmorillonite with silica iron sol particles obtained by depositing iron hydroxy cations on hydrolyzed silica sol surfaces. Three kinds of surfactant molecules with different molecular geometries and sizes were subsequently introduced between the interlayer spaces of the oxide sol exchanged montmorillonite. Upon intercalating the organic templates, a part of the interlayer sol particles was replaced and rearranged by the templates. Removing the templates by calcination at 550 degrees C resulted in the mesoporous sol pillared clays with controlled pore structures. The porous characteristics of the modified pillared clays were analyzed in detail using nitrogen and some selected solvent adsorption-desorption isotherms, which exhibited extremely large BET surface areas up to 750 m(2) g(-1) and enlarged pore sizes of > 20 Angstrom. [References: 31]
机译:基于有机模板的后插层,提出了一种改性二氧化硅铁氧化物溶胶颗粒柱撑蒙脱土层间孔结构的新途径。通过使钠-蒙脱石与通过在水解的硅溶胶表面上沉积铁羟基阳离子而获得的硅铁溶胶颗粒反应,可以制备出原始的混合氧化物溶胶柱状蒙脱石(SFM)。随后在氧化物溶胶交换的蒙脱石的层间空间之间引入了三种具有不同分子几何形状和尺寸的表面活性剂分子。在插入有机模板后,一部分夹层溶胶颗粒被模板替换并重新排列。通过在550℃下煅烧除去模板,得到具有受控孔结构的介孔溶胶柱状粘土。使用氮气和一些选定的溶剂吸附-解吸等温线对改性柱状粘土的多孔特性进行了详细分析,它们显示出高达750 m(2)g(-1)的极大的BET表面积和大于20埃的扩大孔径。 [参考:31]

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