首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Competition and miscibility of isodimorphism and their effects on band spherulites and mechanical properties of poly(butylene succinate-co-cis-butene succinate) unsaturated aliphatic copolyesters
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Competition and miscibility of isodimorphism and their effects on band spherulites and mechanical properties of poly(butylene succinate-co-cis-butene succinate) unsaturated aliphatic copolyesters

机译:异症的竞争与混溶性及其对聚(丁二酸酯 - CI-CIS-丁烯琥珀酸酯)不饱和脂族共聚酯的频带球晶和力学性能的影响

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摘要

Unsaturated copolyesters poly(butylene succinate-co-cis-butene succinate) (P(BS-co-cBS)) were the first time prepared by polycondensation in combination with stannous octoate as catalyst and 4-methoxyphenol as radical inhibitor, achieving linear random copolyesters with a number-average molecular weight up to 38.2 kg/mol. The cis-2-butene-1, 4-diol used in this work showed a peculiarity of no isomerization or cross-linking side reaction even at high reaction temperatures, due to the high chemical stability of the unconjugated cis-double bond. Isodimorphic behavior between butylene succinate (BS) and cis-butane succinate (cBS) in P(BS-co-cBS) was evidenced by DSC and WARD analyses. Then, the competition and miscibility of isodimorphism between BS and cBS units were further investigated by thermodynamic analyses. The significant discrepancy in competition and miscibility between BS and cBS units from conformational geometry demonstrated unique physicochemical properties and structure-properties relationships in such system of unsaturated copolyesters. A great impact of competition and miscibility on band spherulites and mechanical properties of the copolyesters was observed and discussed. In conclusion, our work here not only clarifies the effect of cis-double bond on isodimorphism in the unsaturated copolyesters, but also gives an insight into the mechanism of how the competition and miscibility regulates their physical properties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:不饱和共聚酯聚(丁二烯琥珀酸酯-CIS-丁烯琥珀酸盐)(P(BS-CO-CBS))是通过缩聚与辛酸辛酸盐作为催化剂和4-甲氧基苯酚作为自由基抑制剂,实现线性随机共聚酯的第一次数均分子量高达38.2kg / mol。在该工作中使用的顺式-2-丁烯-1,4-二醇表明,即使在高反应温度下,由于未缀合的顺式双键的高化学稳定性,即使在高反应温度下也没有异构化或交联副反应的特殊性。通过DSC和病房分析证明了对丁二琥珀酸酯(BS)和顺式丁烷琥珀酸酯(CBS-BUTANE琥珀酸盐(CBS)之间的异态症行为。然后,通过热力学分析进一步研究了BS和CBS单位之间的竞争和混溶性。来自构象几何形状的BS和CBS单位之间的竞争和误差的显着差异显示出在这种不饱和共聚酯的这种系统中的独特物理化学性质和结构性质关系。讨论并讨论了竞争和对频带球素和配共聚酯的力学性能的巨大影响。总之,我们在这里的工作不仅阐明了CIS-双键对不饱和共聚体中的异症的影响,而且还熟悉竞争和混溶性如何调节其物理性质的机制。 (c)2018年elestvier有限公司保留所有权利。

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