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Synthesis and Development of a Multifunctional Self-Decontaminating Polyurethane Coating

机译:多功能自污染聚氨酯涂料的合成与开发

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摘要

A unique, durable, nonleaching antimicrobial urethane coating possessing energy-dampening properties is reported. Five novel diol-functionalized quaternary ammonium bromide salts were designed, synthesized, and cross-linked with a commercial polyisocyanate to afford novel multifunctional self-decontaminating coatings. Leaching of the antimicrobial into the environment is eliminated because of the biocidal tether. The effectiveness of these molecules to self-concentrate at the air—polymer interface without addition of other surface modifying additives proved extremely advantageous, and consequently resulted in microphase separation as confirmed by AFM. The coatings were designed to continuously decontaminate against a variety of pathogenic bacteria in addition to affording preliminary dampening properties. Minimum inhibitory concentration studies as well as surface antimicrobial evaluations were conducted using both Gram-positive and Gram-negative bacteria. Additionally, viscoelastic properties, hardness, tack, and surface energy measurements were used to correlate with coating performance.
机译:据报道,具有能量阻尼特性的独特,耐用,不浸出的抗菌聚氨酯涂料。设计,合成了五种新颖的二醇官能化溴化季铵盐,并与市售的多异氰酸酯交联,从而提供了新型的多功能自污染涂料。由于具有杀生物系绳,因此消除了向环境中的抗菌素浸出。这些分子在不添加其他表面改性添加剂的情况下在空气-聚合物界面自富集的有效性被证明是极为有利的,因此,如AFM所证实的,导致了微相分离。除了提供初步的防潮性能外,该涂料还被设计为可对各种病原菌进行连续去污。使用革兰氏阳性菌和革兰氏阴性菌进行了最低抑菌浓度研究以及表面抗菌评估。另外,使用粘弹性,硬度,粘性和表面能测量值来与涂层性能相关。

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