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通过柠檬酸改性增强生物基聚酯涂料树脂的功能。

Enhancing the functionality of biobased polyester coating resins through modification with citric acid.

作者信息

Noordover Bart A J, Duchateau Robbert, van Benthem Rolf A T M, Ming Weihua, Koning Cor E

机构信息

Laboratory of Polymer Chemistry, Eindhoven University of Technology, Den Dolech 2, 5600 MB Eindhoven, The Netherlands.

出版信息

Biomacromolecules. 2007 Dec;8(12):3860-70. doi: 10.1021/bm700775e. Epub 2007 Nov 10.

Abstract

Citric acid (CA) was evaluated as a functionality-enhancing monomer in biobased polyesters suitable for coating applications. Model reactions of CA with several primary and secondary alcohols and diols, including the 1,4:3,6-dianhydrohexitols, revealed that titanium(IV) n-butoxide catalyzed esterification reactions involving these compounds proceed at relatively low temperatures, often via anhydride intermediates. Interestingly, the facile anhydride formation from CA at temperatures around CA's melting temperature ( T m = 153 degrees C) proved to be crucial in modifying sterically hindered secondary hydroxyl end groups. OH-functional polyesters were reacted with CA in the melt between 150 and 165 degrees C, yielding slightly branched carboxylic acid functional materials with strongly enhanced functionality. The acid/epoxy curing reaction of the acid-functional polymers was simulated with a monofunctional glycidyl ether. Finally, the CA-modified polyesters were applied as coatings, using conventional cross-linking agents. The formulations showed rapid curing, resulting in chemically and mechanically stable coatings. These results demonstrate that citric acid can be applied in a new way, making use of its anhydride formation to functionalize OH-functional polyesters, which is an important new step toward fully biobased coating systems.

摘要

柠檬酸(CA)被评估为适用于涂料应用的生物基聚酯中的一种功能增强单体。CA与几种伯醇、仲醇和二醇(包括1,4:3,6 - 二脱水己糖醇)的模型反应表明,钛(IV)正丁醇盐催化的涉及这些化合物的酯化反应在相对较低的温度下进行,通常通过酸酐中间体。有趣的是,在接近CA熔点(Tm = 153℃)的温度下,CA易于形成酸酐,这在修饰位阻仲羟基端基方面被证明是至关重要的。含羟基的聚酯在150至165℃之间的熔体中与CA反应,生成具有略微支化结构且功能显著增强的羧酸功能材料。用单官能缩水甘油醚模拟了酸官能聚合物的酸/环氧固化反应。最后,使用传统交联剂将CA改性的聚酯用作涂料。这些配方显示出快速固化,形成了化学和机械性能稳定的涂层。这些结果表明,柠檬酸可以以一种新方式应用,利用其酸酐形成来官能化含羟基的聚酯,这是迈向完全生物基涂料体系的重要新进展。

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