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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of polyimide precursor synthesis route and ortho-position functional group on thermally rearranged (TR) polymer properties: Conversion and free volume
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Influence of polyimide precursor synthesis route and ortho-position functional group on thermally rearranged (TR) polymer properties: Conversion and free volume

机译:聚酰亚胺前体合成路线和邻位官能团对热重排(TR)聚合物性能的影响:转化率和自由体积

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摘要

Thermal rearrangement of polyimides with ortho-position groups to polybenzoxazoles and related structures has been of recent interest for producing gas separation membranes. This study explores the influence of synthesis route and ortho-position functional group on the thermal rearrangement process and the fractional free volume of thermally rearranged (TR) polymers produced from polyimides derived from 3,30-dihydroxy-4,40-diamino-biphenyl and 2,20-bis-(3,4-dicarboxyphenyl) hexafluoropropane dianhydride (HABe6FDA). Acetate, propanoate, and pivalate ortho-position functional groups were considered. Thermogravimetric analysis (TGA) was used to study thermal rearrangement at temperatures between 350 and 450 ℃, and evolved gases from TGA were analyzed via mass spectrometry to characterize the byproducts of thermal rearrangement and thermal degradation. CO_2 was the major byproduct of thermal rearrangement for all samples, and its evolution began well before the onset of thermal degradation. When non-hydroxyl ortho-position groups were present in the polymers, several byproducts other than CO_2 were also observed due to the loss of these ortho-position groups before thermal rearrangement. Free volume generally increased with increasing extent of thermal rearrangement, but precise values of free volume could not be accurately determined for polymers with propanoate and pivalate ortho-position functional groups due to uncertainties in the chemical structure of partially converted materials. For polymers with acetate and hydroxyl ortho-position groups, free volume could be determined within the uncertainty of density measurements. Thermal rearrangement behavior and free volume results for acetate containing polymers synthesized via different routes were very similar. Based on these results, the chemical structure of the ortho-position functional group has a larger impact on TR polymer properties than the polyimide precursor synthesis route.
机译:具有邻位基团的聚酰亚胺的热重排成聚苯并恶唑和相关结构已成为生产气体分离膜的最新兴趣。这项研究探讨了合成路线和邻位官能团对热重排过程以及由3,30-二羟基-4,40-二氨基联苯和2,20-双-(3,4-二羧苯基)六氟丙烷二酐(HABe6FDA)。考虑乙酸,丙酸酯和新戊酸酯的原位官能团。用热重分析法(TGA)研究温度在350到450℃之间的热重排,并通过质谱分析从TGA放出的气体来表征热重排和热降解的副产物。对于所有样品,CO_2是热重排的主要副产物,并且在热降解开始之前就已经开始了CO_2的演化。当聚合物中存在非羟基邻位基团时,由于在热重排之前这些邻位基团的丢失,还观察到了除CO_2以外的几种副产物。自由体积通常随着热重排程度的增加而增加,但是由于部分转化的材料的化学结构不确定性,具有丙酸酯和新戊酸酯邻位官能团的聚合物无法精确确定自由体积的精确值。对于具有乙酸酯和羟基邻位基团的聚合物,可以在密度测量的不确定性范围内确定自由体积。通过不同途径合成的含乙酸盐的聚合物的热重排行为和自由体积结果非常相似。基于这些结果,与聚酰亚胺前体合成路线相比,邻位官能团的化学结构对TR聚合物性能的影响更大。

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