Ge Baosheng, Xu Yanyan, Zhao Haoru, Sun Haixiang, Guo Yaoli, Wang Wenguang
State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East China), Qingdao 266580, China.
College of Science, China University of Petroleum (East China), Qingdao 266580, China.
Materials (Basel). 2018 Aug 13;11(8):1421. doi: 10.3390/ma11081421.
Mixed matrix membranes (MMMs) attract great attention due to their outstanding gas separation performance. The compatibility between the fillers and the polymer matrix is one of the key points for the preparation of high-performance MMMs. In this work, MMMs consisting of metal-organic frameworks (MOFs) of amine-modified Cu-BTC (NH₂-Cu-BTC; BTC = 1,3,5-benzenetricarboxylic acid) and submicrometer-sized amine-modified Cu-BTC (sub-NH₂-Cu-BTC) incorporated into a Pebax-1657 polymer were fabricated for the gas separation. The SEM image and Fourier transform infrared spectroscopy (FTIR) spectra showed an increase in the surface roughness of MOFs and the presence of amino groups on the surface of Cu-BTC after the amination modification, and a decrease in the size of MOFs crystals after the submicrometer-sized aminated modification. Gas adsorption analysis indicated that NH₂-Cu-BTC and sub-NH₂-Cu-BTC had a higher gas adsorption capacity for CO₂ compared to the unmodified Cu-BTC. The scanning electron microscopy (SEM) image showed that NH₂-Cu-BTC and sub-NH₂-Cu-BTC, especially sub-NH₂-Cu-BTC, had a better compatibility with a polyether-block-amide (Pebax) matrix in the MMMs. The gas separation performance indicated that the Pebax/sub-NH₂-Cu-BTC MMMs evidently improved the CO₂/N₂ and CO₂/CH₄ selectivity at the expense of a slight CO₂ permeability. The results reveal that modified MOF-filled MMMs possess great potential for applications in the CO₂ separation field.
混合基质膜(MMMs)因其出色的气体分离性能而备受关注。填料与聚合物基体之间的相容性是制备高性能MMMs的关键要点之一。在本工作中,制备了由胺改性的Cu-BTC(NH₂-Cu-BTC;BTC = 1,3,5-苯三甲酸)金属有机框架(MOFs)和亚微米级胺改性的Cu-BTC(亚NH₂-Cu-BTC)掺入Pebax-1657聚合物中组成的MMMs用于气体分离。扫描电子显微镜(SEM)图像和傅里叶变换红外光谱(FTIR)光谱表明,胺化改性后MOFs的表面粗糙度增加,Cu-BTC表面存在氨基,亚微米级胺化改性后MOFs晶体尺寸减小。气体吸附分析表明,与未改性的Cu-BTC相比,NH₂-Cu-BTC和亚NH₂-Cu-BTC对CO₂具有更高的气体吸附容量。SEM图像显示,NH₂-Cu-BTC和亚NH₂-Cu-BTC,尤其是亚NH₂-Cu-BTC,在MMMs中与聚醚嵌段酰胺(Pebax)基体具有更好的相容性。气体分离性能表明,Pebax/亚NH₂-Cu-BTC MMMs以略微降低CO₂渗透率为代价,显著提高了CO₂/N₂和CO₂/CH₄选择性。结果表明,改性MOF填充的MMMs在CO₂分离领域具有巨大的应用潜力。