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Characterization of model compounds and poly(amide-urea)urethanes based on amino acids by FTIR, NMR and other analytical techniques

机译:通过FTIR,NMR和其他分析技术表征基于氨基酸的模型化合物和聚(酰胺-脲)氨基甲酸酯

摘要

The synthesis of novel polyurethanes is a subject of increasing interest, especially those thatudinvolve biologically active molecules. Generally, the reports on the synthesis of segmentedudpolyurethanes using modified amino acids as chain extenders assume that the reaction occurs due to functionalities (OH and NH2) of the last compounds. However, few works really prove theudreaction takes place with unmodified amino acids. In this work, spectroscopic techniques such as 1H, 13C, and 1H-1H COSY NMR and FTIR were used to chemical characterization of poly(ureaamide)urethanes synthesized from polycaprolactone diol (PCL diol 530), 4,4¿-methylene-bis(cyclohexyl isocyanate) (H12MDI), and amino acids such as L-arginine, glycine or L-aspartic acid as chain extenders. In addition, model compounds (without PCL diol) were analyzed to confirm reaction of amino acids via urea and amide formation. Additionally, the polymers exhibited different physicochemical and mechanical properties depending on the chain extender used. These results suggest that unmodified amino acids can be used as chain extenders in the synthesis of poly(amide-urea) urethanes for biomedical applications
机译:新型聚氨酯的合成是一个日益引起人们关注的主题,尤其是涉及生物活性分子的聚氨酯。通常,关于使用修饰的氨基酸作为扩链剂来合成链段 ud聚氨酯的报告认为该反应是由于最后一种化合物的官能度(OH和NH2)而发生的。但是,很少有工作能真正证明未修饰的氨基酸发生过反应。在这项工作中,使用诸如1H,13C和1H-1H的光谱技术进行COZY NMR和FTIR来化学表征由聚己内酯二醇(PCL二醇530),4,4′-亚甲基双(环己基异氰酸酯(H12MDI),以及诸如L-精氨酸,甘氨酸或L-天冬氨酸等氨基酸作为扩链剂。此外,分析了模型化合物(不含PCL二醇)以确认氨基酸通过尿素和酰胺形成的反应。另外,取决于所用的扩链剂,聚合物表现出不同的物理化学和机械性能。这些结果表明未修饰的氨基酸可用作生物医学应用的聚(酰胺-脲)氨基甲酸酯合成中的扩链剂。

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