首页> 外文期刊>Journal of Applied Polymer Science >In situ polymerization of polyurethane-silver nanocomposite foams with intact thermal stability, improved mechanical performance, and induced antimicrobial properties
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In situ polymerization of polyurethane-silver nanocomposite foams with intact thermal stability, improved mechanical performance, and induced antimicrobial properties

机译:具有完整的热稳定性,改善的机械性能和诱导的抗菌性能的聚氨酯-银纳米复合泡沫的原位聚合

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摘要

Silver nanoparticle-reinforced thermoplastic polyurethane (PU/AgNP) nanocomposite foams were prepared using in situ polymerization techniques in accordance with DOW chemicals' industrial standards. The foams exhibited improved mechanical performance, induced antimicrobial properties, and intact stability when subjected to a thermal degradation treatment. Scanning electron microscopy (SEM) indicated a homogeneous dispersion of the silver nanoparticle (AgNP) within the polymeric matrix at low filler loadings and a cluster formation at higher loadings. SEM also indicated the agglomeration of the silver nanofiller particles as a result of the thermal degradation treatment, which caused them to lose their nanoscopic characteristics and act as ordinary silver metal. Molecular modeling techniques were used to explain these observations and confirmed the higher repulsive interactions between the polymer chains and the silver nanoparticles with the increase in the nanofiller content. Stress relaxation of the nanocomposites showed optimum mechanical performance and lowest hysteresis for the 0.1% AgNP nanocomposites due to the confinement of the PU chains between the large number of the nanoparticles. Incubation with 0.1% foam inhibited the growth of Klebseilla spp. and Escherichia coli and to some extent Staphylococcus spp. This is very interesting as the same nanocomposite loaded with 0.1% AgNp has also shown the best mechanical performance highlighting the strong action of this "unclustered" low concentration on both the material and biomedical sides. (c) 2015 Wiley Periodicals, Inc.
机译:银的纳米颗粒增强热塑性聚氨酯(PU / AgNP)纳米复合泡沫材料是根据DOW化学品工业标准使用原位聚合技术制备的。当进行热降解处理时,泡沫表现出改善的机械性能,诱导的抗微生物性质和完整的稳定性。扫描电子显微镜(SEM)表明,在低填料填充量下,银纳米颗粒(AgNP)在聚合物基体内的均匀分散,而在较高填充量下成簇形成。 SEM还表明,由于热降解处理,银纳米填料颗粒发生团聚,这导致它们失去了纳米特性,并充当普通的银金属。分子建模技术被用来解释这些观察结果,并证实随着纳米填料含量的增加,聚合物链与银纳米颗粒之间的排斥力更高。纳米复合材料的应力松弛表现出最佳的机械性能,并且对于0.1%AgNP纳米复合材料而言,其滞后性最低,这归因于大量纳米颗粒之间的PU链限制。与0.1%泡沫一起孵育可抑制Klebseilla spp的生长。大肠杆菌和某种程度上的葡萄球菌。这是非常有趣的,因为负载0.1%AgNp的同一纳米复合材料还显示出最佳的机械性能,突出了这种“无簇集”的低浓度对材料和生物医学方面的强大作用。 (c)2015年威利期刊有限公司

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