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首页> 外文期刊>Polymer international >Effect of 1,4-cyclohexylene units on thermal properties of poly(1,4-cyclohexylenedimethylene adipate) and similar aliphatic polyesters
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Effect of 1,4-cyclohexylene units on thermal properties of poly(1,4-cyclohexylenedimethylene adipate) and similar aliphatic polyesters

机译:1,4-亚环己基单元对聚(1,4-亚环己基二己二酸酯)和类似脂肪族聚酯热学性能的影响

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摘要

In the field of aliphatic polyesters there is a great interest in building novel macromolecular structures that may effectively feature the required properties for specific applications. For this reason, it is extremely important to understand the correlations between chemical structure and final performance. Monomers based on the 1,4-cyclohexylene unit are interesting as they are potentially bio-based and rigid enough to improve glass transition and melting temperatures. The present paper describes the preparation of samples of poIy(1,4-cyclohexylenedimethylene adipate), characterized by different cis/trans isomeric ratio of the cyclic units, the analysis of their thermal properties and the comparison with the properties of similar polymers such as poly(butylene adipate), poly(butylene-1,4-cyclohexanedicarboxy!ate) and poly(1,4-cyclohexylenedimethylene-1,4-cyclohexanedicarboxylate). The effect of the rigidity and of the stereochemistry of the 1,4-cyclohexylene unit on the thermal properties was analysed. Such an effect reaches its maximum level when the cyclic-containing monomers are the diacid or the diester and when the trans isomers predominate. Starting from such a result, the combination of specific cyclic building blocks with the correct cis/trans ratio makes it possible to build macromolecular structures with the required final properties.
机译:在脂族聚酯领域中,人们对构建新颖的大分子结构非常感兴趣,该结构可以有效地体现特定应用所需的特性。因此,了解化学结构与最终性能之间的关系非常重要。基于1,4-亚环己基单元的单体很有趣,因为它们可能是生物基的,并且具有足够的刚性以改善玻璃化转变和熔融温度。本文描述了聚(1,4-环己二亚甲基己二酸酯)样品的制备,其特征在于环单元的顺式/反式异构体比例不同,分析了它们的热性能,并与类似聚合物如聚酰亚胺的性能进行了比较。 (己二酸丁二酯),聚(1,4-环己二甲酸丁二酯)和聚(1,4-环己二甲基二亚甲基-1,4-环己烷二甲酸)。分析了1,4-亚环己基单元的刚度和立体化学性质对热性能的影响。当含环的单体是二酸或二酯并且反式异构体占优势时,这种作用达到最大水平。从这样的结果开始,具有正确的顺/反比的特定环状结构单元的组合使得可以构建具有所需最终性质的大分子结构。

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