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Structuring and characterization of a novel highly microporous PEI/BMI semi-interpenetrating polymer network

机译:新型高微孔PEI / BMI半互穿聚合物网络的结构和表征

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摘要

Syntheses of semi-interpenetrating polymer networks (semi-IPNs) with polyetherimide/bismaleimide (PEI/BMI) chromophore composites showing molecular sieve characteristics are reported. A tunable and compatible chemical Structure with fine morphology was obtained through in situ controlled sol-gel polymerization, crosslinking, chemical modification and membrane fabrication. The novel semi-IPN synthesized and assembled Using ethanol as polar protic modifier and pore former, had superior structure and morphology for making gas separation membranes. These semi-IPN membranes gave 15 times higher gas flux than those membranes prepared from pure PEI without significant decrease ill gas selectivity. The chemical Structures of these novel semi-IPNs were elucidated by FTIR, XPS and SEM. It appears that in Situ simultaneous ethoxylation, anionic polymerization of BMI and imide modifications were responsible for creating the new chemical Structure and molecular morphology that was different from traditional BMI resins. In addition, these chemical processes give Superior structures Using green chemistry techniques Such as ambient temperature reaction and polymerization without initiators. Crown Copyright (c) 2005 Published by Elsevier Ltd. All rights reserved.
机译:报告了具有分子筛特征的聚醚酰亚胺/双马来酰亚胺(PEI / BMI)生色团复合物的半互穿聚合物网络(semi-IPNs)的合成。通过原位控制的溶胶-凝胶聚合,交联,化学改性和膜制造,获得了具有良好形态的可调且相容的化学结构。以乙醇为极性质子改性剂和成孔剂合成组装的新型半IPN具有优良的结构和形貌,可用于制备气体分离膜。这些半IPN膜的气体通量是从纯PEI制备的那些膜的15倍,而不会显着降低有害气体的选择性。 FTIR,XPS和SEM阐明了这些新型半IPN的化学结构。看来,原位同时乙氧基化,BMI的阴离子聚合和酰亚胺修饰是造成不同于传统BMI树脂的新化学结构和分子形态的原因。此外,这些化学过程使用绿色化学技术(例如环境温度反应和不使用引发剂的聚合反应)提供了卓越的结构。 Crown版权所有(c)2005,由Elsevier Ltd.发行。保留所有权利。

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