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Chemical modification and structural rearrangements of polyketone-based polymer membrane

机译:聚酮基聚合物膜的化学改性与结构重排

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摘要

Alternating polyketones constitute a very interesting class of polymers, which can be modified for the preparation of functional polymers. The chemical modification of polyketone using 1,2-diaminopropane was used to prepare a conductive membrane. This paper is focused on the synthesis and structural rearrangements of polyamine for preparing anion-exchange membranes by the solvent casting technique. According to the Paal-Knorr mechanism, 1,4-dicarbonyl of polyketone reacts with 1,2-diaminopropane to form a pyrrole ring along the polyketone backbone. In addition, the so-modified polyamines can undergo structural rearrangements to form N-substituted pyrrole crosslinked with dihydropyridine units. The conversion degree and the N content are quite low. The pathway reactions have been proposed on the basis of H-1-NMR, ultraviolet-visible, and Fourier transform infrared results. Scanning electron microscopy, differential scanning calorimetry, and X-ray diffraction techniques were used to study the morphological, thermal, and structural characteristics of the modified polyketone, as well as the correspondoing membrane. The experimental results indicated that the membrane is a potential candidate for energy conversion technology. (c) 2017 Wiley Periodicals, Inc.
机译:交替的聚酮构成非常有趣的聚合物类,其可以用于制备官能聚合物的修饰。使用1,2-二氨基丙烷的聚酮化学改性制备导电膜。本文集中于多胺的合成和结构重排用溶剂浇铸技术制备阴离子交换膜的合成和结构重排。根据Paal-Knorr机理,聚酮的1,4-二羰基与1,2-二氨基丙烷反应,形成沿着聚酮骨架的吡咯环。此外,所改性的多胺可以经过结构重排,以形成与二氢吡啶单元交联的N-取代的吡咯。转换程度和N内容非常低。已经在H-1-NMR,紫外线可见和傅里叶变换红外结果的基础上提出了途径反应。扫描电子显微镜,差示扫描量热法和X射线衍射技术用于研究改性聚酮的形态学,热和结构特征,以及对应膜。实验结果表明,膜是能量转换技术的潜在候选者。 (c)2017 Wiley期刊,Inc。

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