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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis of potentially biobased copolyesters based on adipic acid and butanediols: Kinetic study between 1,4-and 2,3-butanediol and their influence on crystallization and thermal properties
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Synthesis of potentially biobased copolyesters based on adipic acid and butanediols: Kinetic study between 1,4-and 2,3-butanediol and their influence on crystallization and thermal properties

机译:基于己二酸和丁二醇的潜在生物基共聚酯的合成:1,4-和2,3-丁二醇之间的动力学研究及其对结晶和热性能的影响

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摘要

Different potentially biobased copolyesters with specific macromolecular architectures are successfully synthesized from renewables diols and diacids, and characterized. The first part focuses on the study of the esterification kinetic of two equimolar systems, 1,4-butanediol (1,4-BDO)/adipic acid (AA) and 2,3-butanediol (2,3-BDO)/AA, with and without titanium isopropoxide (TTIP) as catalyst. The influence of the type of diol (primary vs. secondary hydroxyl groups) and the temperature is also investigated. The esterification rate with 2,3-BDO is slower than with 1,4-BDO leading to higher activation energy. In the second part, poly(1,4-butylene adipate) (PBA) and poly(2,3-butylene adipate) (PB'A) aliphatic polyesters and the corresponding copolyester [poly(1,4-butylene adipate-co-2,3-butylene adipate) (PBB'A)] are synthesized by transesterification in bulk using TTIP. According to our knowledge, the synthesis of PBB'A is reported here for the first time. All synthesized copolymers are characterized by NMR, SEC, FTIR, WAXS, MALDI-TOF, DSC, TGA and specific optical rotation. PBA with a mass-average molar mass around 60,000 g/mol is obtained, whereas molar mass of PB'A and PBB'A are significantly lower. The 2,3-BDO molar content in copolyesters is lower than the initial molar feed content. A linear evolution is observed between 2,3-BDO content and specific optical rotation of the polyesters allowing to use this relation as an additional method to determine PBB'A composition. PBA shows a semi-crystalline behavior, whereas PB'A is amorphous. An increase of the 2,3-BDO content in the copolyester raises the glass transition temperature and reduces the crystallinity. All polyesters exhibit a good thermal stability, exceeding 280 degrees C, with a maximum rate of degradation around 380 degrees C. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从可再生二醇和二酸中成功合成了具有特定大分子结构的不同潜在生物基共聚酯,并对其进行了表征。第一部分着重研究两个等摩尔体系1,4,4-丁二醇(1,4-BDO)/己二酸(AA)和2,3-丁二醇(2,3-BDO)/ AA的酯化动力学,有和没有异丙醇钛(TTIP)作为催化剂。还研究了二醇类型(伯羟基与仲羟基)和温度的影响。 2,3-BDO的酯化速率比1,4-BDO的酯化速率慢,导致活化能更高。在第二部分中,聚(1,4-丁烯己二酸酯)(PBA)和聚(2,3-丁烯己二酸酯)(PB'A)脂族聚酯和相应的共聚酯[聚(1,4-丁烯己二酸酯-共聚通过使用TTIP进行大量的酯交换反应合成了2,3-己二酸丁二酯(PBB'A)]。据我们所知,此处首次报道了PBB'A的合成。所有合成的共聚物的特征在于NMR,SEC,FTIR,WAXS,MALDI-TOF,DSC,TGA和比旋光度。获得质均摩尔质量为约60,000 g / mol的PBA,而PB'A和PBB'A的摩尔质量明显较低。共聚酯中的2,3-BDO摩尔含量低于初始摩尔进料含量。观察到2,3-BDO含量与聚酯的比旋光度之间存在线性关系,从而可以将此关系用作确定PBB'A组成的另一种方法。 PBA显示出半结晶行为,而PB'A是无定形的。共聚酯中2,3-BDO含量的增加提高了玻璃化转变温度并降低了结晶度。所有聚酯均具有超过280摄氏度的良好热稳定性,最大​​降解速率约为380摄氏度。(C)2016 Elsevier Ltd.保留所有权利。

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