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Relationship between polymer structure and gas transport properties in a series of fluorine-containing aromatic polyamide membranes for oxygen enrichment

机译:聚合物结构与含氟芳族聚酰胺膜中的含氟芳族聚酰胺膜的含氧富集的关系

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In this work, a series of fluorine-containing aromatic polyamide membranes were prepared by direct poly-condensation of 4,4'-hexafluoroisopropylidene-dibenzoic acid with various aromatic diamines, and the associated gas transport and sorption properties were investigated. The properties of the prepared aromatic polyamides were examined by elemental analysis, FTIR, and X-ray diffraction. It was found that both gas diffusivity and permeability can be increased by the introduction of bulky substituted groups and arylene ether groups into the polymer backbone. Membranes with oxygen permeability of 3.8 barrers and O_2/N_2 selectivity of 4.6 were obtained by using the polyamide with 2,5 di-fert-butylbenzene group in the polymer backbone. It was also found that the relationship between the membrane structure and the sorption properties can be well explained by the dual sorption model.
机译:在这项工作中,通过使用各种芳族二胺的4,4'-六氟异丙基丙烯 - 二苯甲酸直接聚缩合制备一系列含氟芳族聚酰胺膜,并研究了相关的气体输送和吸附性能。通过元素分析,FTIR和X射线衍射检查制备的芳族聚酰胺的性质。发现可以通过将庞大的取代基和亚芳基醚基团引入聚合物主链中来增加气体扩散性和渗透性。通过在聚合物主链中用2,5-5-叔丁基苯基团获得3.8漏极的氧气和O_2 / N_2选择性的膜。还发现,膜结构与吸附特性之间的关系可以通过双吸附模型很好地解释。

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