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Effect of UV crosslinking on transport properties of CO2 and N2 through poly(imide-siloxane) segmented copolymer

机译:UV交联对CO2和N2通过聚(酰亚胺 - 硅氧烷)分段共聚物的运输性能的影响

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Crosslinkable segmented random copolymers are made by synthesizing a polyimide in the presence of bisaminopropyl dimethylsiloxane (PDMS) oligomers. The polyimide segments of these materials are composed of two different dianhydrides, 2,2'-bis-(3,4-dicarboxyphenyl) hexafluoropropane dianhydride (6FDA), and 3,3',4,4'-benzophenone tetracarboxylic dianhydride (BTDA) with the base diamine, 2,4,6-trimethyl-l,3-phenylenediamine (DAM). Upon irradiation with UV light, the ketone group in BTDA can form radicals that crosslink with adjacent benzylic methyl groups on DAM. Thermal analysis reveals that siloxane-containing polyimide copolymer films are phase segregated, composed of a polyimide-rich continuous phase and dispersed PDMS phase. CO2 and N2 gas permeabilities of unerosslinked and crosslinked samples were measured to investigate the effect of UV crosslinking on permeability and permselectivity. Incorporation of PDMS did not significantly change the transport properties of the membranes. Densification occurred as a result of UV crosslinking, which enhanced the size-sieving capability of the poly(imide-siloxane) segmented copolymer membrane.
机译:通过在双氨基丙基二甲基硅氧烷(PDMS)低聚物存在下,通过合成聚酰亚胺来制备可交联的分段无规共聚物。这些材料的聚酰亚胺段由两种不同的二酐,2,2'-bis-(3,4-二羧基)六氟丙烷二酐(6fda)和3,3',4,4'-二苯基酮四羧酸二酐(BTDA)组成用碱二胺,2,4,6-三甲基-1,3-苯二胺(坝)。在用UV光照射时,BTDA中的酮基团可以形成与坝上的相邻苄基甲基交联的基团。热分析表明,含硅氧烷的聚酰亚胺共聚物膜是相隔离的,由富含聚酰亚胺的连续相和分散的PDMS相组成。测量了Unerless和交联样品的CO 2和N 2气体渗透性,以研究UV交联对渗透性和偏移率的影响。 PDMS的掺入没有显着改变膜的运输性质。作为UV交联的结果发生致密化,这提高了聚(亚胺 - 硅氧烷)分段共聚物膜的尺寸筛分能力。

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