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Improved performance of PDMS/ceramic composite pervaporation membranes by ZSM-5 homogeneously dispersed in PDMS via a surface graft/coating approach

机译:通过表面接枝/涂覆方法将ZSM-5均匀分散在PDMS中,从而改善PDMS /陶瓷复合渗透膜的性能

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摘要

A homogeneous dispersion of inorganic fillers in polymer matrix is a primary challenge for the advancement of mixed matrix membranes (MMMs) in pervaporation and gas separation. In this work, a surface graft/coating approach was developed for homogeneously dispersing ZSM-5 zeolite in polydimethylsilox-ane (PDMS) for preparing ZSM-5 filled PDMS mixed matrix/ceramic composite membranes. Molecular dynamics simulations were carried out to calculate the interaction energy between zeolite and PDMS. It was found that surface modification of zeolite particles could highly improve their interaction with PDMS matrix. The SEM images confirmed the uniform dispersions of surface-modified ZSM-5 particles in PDMS matrix even at highest zeolite loading of 40 wt.%. As revealed in the FT-IR analysis and contact angle measurements, the prepared ZSM-5 filled PDMS membranes exhibited less hydroxyl groups and became more hydrophobic with increasing zeolite loading. The pervaporation experiment in 5 wt.% ethanol-water solution indicated that the homogeneously incorporated ZSM-5 particles improved the selectivity of PDMS membrane, and the separation factor of surface-modified ZSM-5 filled PDMS membrane increased gradually with zeolite loading. This effective dispersion method could be instructive for the fabrication of organic-inorganic composite materials.
机译:无机填料在聚合物基质中的均匀分散是在渗透蒸发和气体分离方面提高混合基质膜(MMM)的主要挑战。在这项工作中,开发了一种表面接枝/涂覆方法,用于将ZSM-5沸石均匀分散在聚二甲基硅氧烷(PDMS)中,以制备ZSM-5填充的PDMS混合基质/陶瓷复合膜。进行分子动力学模拟以计算沸石与PDMS之间的相互作用能。发现沸石颗粒的表面改性可以极大地改善它们与PDMS基质的相互作用。 SEM图像证实即使在最高沸石负载量为40重量%的情况下,表面改性的ZSM-5颗粒在PDMS基质中的均匀分散。如FT-IR分析和接触角测量所揭示的,制备的ZSM-5填充的PDMS膜表现出更少的羟基并且随着沸石负载的增加而变得更疏水。在5 wt。%乙醇水溶液中进行的全蒸发实验表明,均匀掺入的ZSM-5颗粒提高了PDMS膜的选择性,并且表面改性的ZSM-5填充的PDMS膜的分离系数随着沸石载量的增加而逐渐增加。这种有效的分散方法可能对有机-无机复合材料的制造具有指导意义。

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