首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and properties of new organo-soluble and strictly alternating aromatic poly(ester-imide)s from 3,3-bis[4-(trimellitimidophenoxy)phenyl]phthalide and bisphenols
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Synthesis and properties of new organo-soluble and strictly alternating aromatic poly(ester-imide)s from 3,3-bis[4-(trimellitimidophenoxy)phenyl]phthalide and bisphenols

机译:由3,3-双[4-(三苯甲基亚氨基苯氧基)苯基]邻苯二酚和双酚类化合物合成的新型有机可溶且严格交替的芳族聚酯(酰亚胺)

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A series of new strictly alternating aromatic poly(ester-imide)s having inherent viscosities of 0.20-0.98 dL/g was synthesized by the diphenylchlorophosphate (DPCP) activated direct polycondensation of the preformed imide ring-containing diacid, 3,3 -bis [4-(trimellitimidophenoxy)phenyl] phthalide (I), with various bisphenols in a medium consisting of pyridine and lithium chloride. The diimide-diacid I was prepared from the condensation of 3,3-bis [4-(4-aminophenoxy)phenyl] phthalide and trimellitic anhydride, Most of the resulting polymers showed an amorphous nature and were readily soluble in a variety of organic solvents such as N-methyl-2-pyrrolidone (NMP) and N,N-dimethylacetamide (DMAc), Transparent and flexible films of these polymers could be cast from their DMAc solutions. The cast films had tensile strengths ranging 66-105 MPa, elongations at break from 7-10%, and initial moduli from 1.9-2.4 GPa. The glass-transition temperatures of these polymers were recorded between 208-275 degrees C, All polymers showed no significant weight loss below 400 degrees C in the air or in nitrogen, and the decomposition temperatures at 10% weight loss all occurred above 460 degrees C. (C) 2000 John Wiley & Sons, Inc. [References: 26]
机译:通过二苯基氯磷酸酯(DPCP)活化的预成型的含酰亚胺环的二酸3,3-双[[ 4-(三偏苯二甲酰苯氧基)苯基]邻苯二甲酰亚胺(I),在由吡啶和氯化锂组成的介质中具有各种双酚。二酰亚胺二酸I由3,3-双[4-(4-氨基苯氧基)苯基]邻苯二甲酰亚胺与偏苯三酸酐的缩合反应制得。大多数所得聚合物呈无定形性质,易溶于多种有机溶剂例如N-甲基-2-吡咯烷酮(NMP)和N,N-二甲基乙酰胺(DMAc),可以从其DMAc溶液中浇铸这些聚合物的透明且柔软的薄膜。流延膜的拉伸强度为66-105MPa,断裂伸长率为7-10%,初始模量为1.9-2.4GPa。这些聚合物的玻璃化转变温度记录在208-275摄氏度之间,在空气或氮气中,低于400摄氏度,所有聚合物均未显示出明显的重量损失,并且在460摄氏度以上时,发生10%重量损失的分解温度。 (C)2000 John Wiley&Sons,Inc. [参考:26]

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