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Isohexide and Sorbitol-Derived, Enzymatically Synthesized Renewable Polyesters with Enhanced T-g

机译:异己糖胺和山梨糖醇衍生的具有增强T-g的酶合成可再生聚酯

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摘要

Sugar-based polyesters derived from sorbitol and isohexides were obtained via solvent-free enzymatic catalysis. Pendant hydroxyl groups, coming from the sorbitol units, were present along the polyester backbone, whereas the two isohexides, namely, isomannide and isoidide dimethyl ester monomers, were selected to introduce rigidity into the polyester chains. The feasibility of incorporating isomannide as a diol compared to the isoidide dimethyl ester as aryl-donor via lipase-catalyzed polycondensation was investigated. The presence of bicyclic units resulted in enhanced T-g with respect to the parent sorbitol-containing polyester lacking isohexides. The different capability of the two isohexides to boost the thermal properties confirmed the more flexible character provided by the isoidide diester derivative. Solvent-borne coatings were prepared by cross-linking the sugar-based polyester polyols with polyisocyanates. The increased rigidity of the obtained sugar based polyester polyols led to an enhancement in hardness of the resulting coatings.
机译:通过无溶剂的酶催化获得衍生自山梨糖醇和异己糖的糖基聚酯。来自山梨糖醇单元的侧链羟基沿着聚酯主链存在,而选择两种异己糖,即异甘露糖苷和异麦苷二甲基酯单体,以将刚性引入聚酯链中。研究了通过脂肪酶催化的缩聚反应,将异甘露糖醇作为二醇掺入与异戊二烯酸二甲酯作为芳基供体相比的可行性。双环单元的存在导致相对于缺少异己烷的母体含山梨醇的聚酯的T-g提高。两种异己酮提高热性能的能力不同,证实了异戊二烯二酯衍生物具有更灵活的特性。通过使基于糖的聚酯多元醇与多异氰酸酯交联来制备溶剂型涂料。所得糖基聚酯多元醇的刚性增加导致所得涂层的硬度增加。

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