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Fluorinated high-performance polymers: Poly(arylene ether)s and aromatic polyimides containing trifluoromethyl groups

机译:氟化高性能聚合物:含三氟甲基的聚亚芳基醚和芳族聚酰亚胺

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Introduction of fluorine into polymers has been a subject of intense research as it brings about dramatic improvements in several properties of the polymers. Polymers containing fluorinated groups are endowed with solubility in organic solvents, lower dielectric constant and water uptake, higher thermal and thermooxidative stability, better optical transparencies along with higher gas-permeability and flame resistance as compared to their non-fluorinated counterparts. In this context, introduction of trifluoromethyl (-CF3) groups into polymers has been one of the most widely used strategies for structural modification leading to substantial property enhancement. High-performance polymers, e.g., poly(arylene ether)s and aromatic polyimides containing -CF3 substituents have been shown to possess a combination of excellent thermal, mechanical, solubility, processability, optical and electrical properties, rendering them suitable for a wide range of applications, e.g., as low-dielectric materials, in optical devices, as well as membranes for gas and solvent separation, and fuel cells. Moreover, the presence of-CF3 substitution in aromatic groups enables facile synthesis of poly(arylene ether)s by activating the leaving group towards nucleophilic displacement reaction during polymerization. Most of these polymers have been synthesized by solution polycondensation of the corresponding -CF3-substituted monomer. Considerable research has been focused towards the synthesis of new -CF3 substituted monomers and their polymerization, followed by property evaluations of the resulting polymers that has eventually enabled an undertstanding of the structure-property correlation in these polymers. This review provides a comprehensive presentation of-CF3-substituted aromatic polyimides and poly(arylene ether)s developed in the last decade. Work on -CF3-subtituted poly(aryl ether ketone)s and poly(aryl ether sulfone)s, especially with respect to proton-exchage membranes for fuel-cell applications have also been included. The main focus has been devoted to the synthesis of the polymers from the corresponding -CF3 substituted monomers, and the consequent property advantages brought about in the polymer.
机译:将氟引入聚合物中一直是研究的主题,因为它可以显着改善聚合物的几种性能。与不含氟的聚合物相比,含氟基团的聚合物具有在有机溶剂中的溶解度,较低的介电常数和吸水率,较高的热和热氧化稳定性,更好的光学透明性以及较高的透气性和阻燃性。在这种情况下,将三氟甲基(-CF 3)基团引入聚合物中是最广泛用于结构改性的策略之一,其导致显着的性能增强。高性能聚合物(例如,聚(亚芳基醚)和含有-CF3取代基的芳族聚酰亚胺)已显示出具有优异的热,机械,溶解度,可加工性,光学和电学性质的组合,使其适用于宽范围的光学设备中的低介电材料应用,以及用于气体和溶剂分离的膜以及燃料电池等。此外,芳族基团中-CF 3取代的存在使得能够通过在聚合过程中使离去基团朝亲核取代反应活化而容易地合成聚(亚芳基醚)。这些聚合物中的大多数已经通过相应的-CF 3-取代的单体的溶液缩聚来合成。大量的研究集中在新的-CF3取代的单体的合成及其聚合上,随后对所得聚合物进行了性能评估,最终使人们对这些聚合物的结构-性质相关性有了了解。这篇综述全面介绍了近十年来开发的CF3取代的芳族聚酰亚胺和聚亚芳基醚。还包括-CF 3取代的聚(芳基醚酮)和聚(芳基醚砜)的研究,特别是在燃料电池应用的质子交换膜方面。主要焦点已经集中于由相应的-CF 3取代的单体合成聚合物,以及由此带来的在聚合物中的性能优势。

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