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Studies on the structural stability of mesoporous molecular sieves organically functionalized by a direct method

机译:直接法有机功能化介孔分子筛的结构稳定性研究

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摘要

The structural stability of mesoporous molecular sieves organically functionalized by a direct method has been investigated in terms of the stability against moisture treatment and mechanical pressure. Incorporation of organic groups directly attached to Si atoms by the use of organosilanes results in an enhancement of the structural stability compared to purely inorganic ones, this enhancement could be ascribed to an increasein hydrophobicity. By pH adjustment and hydrothermal treatment, a further improvement in the stability is attained. A clear relationship between the structural stability and the amount of monolayer adsorption capacity for water is observed. Organically functionalized samples show a lower monolayer adsorption capacity for water than purely inorganic materials, even though both have the same amount of silanol groups, this is probably due to the water-repelling ability of the surface organic groups.
机译:就对水分处理和机械压力的稳定性而言,已经研究了通过直接方法有机功能化的介孔分子筛的结构稳定性。与纯无机基团相比,通过使用有机硅烷掺入直接连接到Si原子上的有机基团可提高结构稳定性,这种增强可归因于疏水性的提高。通过调节pH值和水热处理,可以进一步提高稳定性。观察到结构稳定性和对水的单层吸附量之间的明确关系。有机官能化的样品显示出比纯无机材料低的单层水吸附能力,即使它们都具有相同数量的硅烷醇基团,这也可能是由于表面有机基团的拒水能力所致。

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