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Increasing the hydrothermal stability of mesoporous SiO_2 with methylchlorosilanes-a 'structural' study

机译:用甲基氯硅烷提高介孔SiO_2的水热稳定性-“结构”研究

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摘要

Mesoporous silica gels with various pore sizes are hydrophobised by liquid-phase silylation with mono- and difunctional methylchlorosilanes.Changes in the pore structure as a result of the silylation reactions are monitored in order to assess the distribution of the hydrophobic groups.Extensive polymerisation of dimethyldichlorosilane (DMDCS) causes blocking of the micropore fraction.For silica with pore sizes in the supermicroporous range (2 nm pore diameter),this leads to hydrophobisation of almost exclusively the outer surface.While for trimethylchlorosilane (TMCS) a smaller number of molecules react with the surface,modification is more homogeneous and an open structure is optimally preserved.Both silanes lead to lower surface polarity and increased hydrothermal stability,i.e.,preservation of the porous structure during exposure to water.As DMDCS reacts more extensively,this agent would be recommended for ceramics with pore diameters larger than about 6 nm.TMCS is the most suitable agent for pore diameters smaller than 4 nm and in case preservation of micropores is required.
机译:通过单和双官能甲基氯硅烷的液相甲硅烷基化对具有各种孔径的中孔硅胶进行疏水化处理,监测甲硅烷基化反应导致的孔结构变化,以评估疏水基团的分布。 (DMDCS)会导致微孔部分阻塞。对于孔径在超微孔范围(孔径为2 nm)的二氧化硅,这几乎导致了其外表面的疏水化。对于三甲基氯硅烷(TMCS),较少的分子与这两种硅烷均会导致较低的表面极性和增加的水热稳定性,即在暴露于水期间可保留多孔结构。由于DMDCS反应更广泛,因此建议使用此试剂适用于孔径大于约6 nm的陶瓷.TMCS最适合孔径小于4 nm且需要保留微孔的试剂。

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