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Effects of flower-like ZnO nanowhiskers on the mechanical, thermal and antibacterial properties of waterborne polyurethane

机译:花状ZnO纳米晶须对水性聚氨酯的机械,热学和抗菌性能的影响

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摘要

A novel waterborne polyurethane/flower-like ZnO nanowhiskers (WPU/f-ZnO) composite with different f-ZnO content (0-4.0 wt%) was synthesized by an in-situ copolymerization process. The f-ZnO consisting of uniform nanorods was prepared via a simple hydrothermal method. In order to disperse and incorporate f-ZnO into WPU matrix, f-ZnO was modified with y-aminopropyltriethoxysilane. Morphology of f-ZnO in WPU matrix was characterized by scanning electron microscope. The properties of WPU/f-ZnO composites such as mechanical strength, thermal stability as well as water swelling were strongly influenced by the f-ZnO contents, ft was demonstrated that appropriate amount of f-ZnO with good dispersion in the WPU matrix significantly improved the performance of the composites. The mechanical property was enhanced with an increase of f-ZnO content up to the optimum content (1 wt%) and then declined. Incorporation of f-ZnO enhanced the water resistance of the composites remarkably. It was amazing to observe that the thermal degradation temperatures of the composites initially decreased significantly and then leveled off with content increase of f-ZnO, which was different from the results of other WPU composite systems reported. Antibacterial activity of WPU/f-ZnO composite films against Escherichia coli and Staphylococcus aureus was also tested. The results revealed that the antibacterial activity enhanced with the increasing f-ZnO content, and the best antibacterial activity was obtained at the loading level of 4.0 wt% f-ZnO.
机译:通过原位共聚工艺合成了一种新型的水性聚氨酯/花状ZnO纳米晶须(WPU / f-ZnO)复合材料,该复合材料具有不同的f-ZnO含量(0-4.0 wt%)。通过简单的水热法制备了由均匀的纳米棒组成的f-ZnO。为了将f-ZnO分散并掺入WPU基质中,用y-氨基丙基三乙氧基硅烷对f-ZnO进行了改性。用扫描电镜对WPU基体中f-ZnO的形貌进行了表征。 f-ZnO含量强烈影响WPU / f-ZnO复合材料的机械强度,热稳定性和水膨胀性等性能,ft证明了在WPU基体中适当分散的f-ZnO量明显改善复合材料的性能。随着f-ZnO含量的增加,机械性能得到提高,直至达到最佳含量(1 wt%),然后下降。掺入f-ZnO显着提高了复合材料的耐水性。令人惊奇的是,复合材料的热降解温度最初显着下降,然后随着f-ZnO含量的增加而趋于平稳,这与报道的其他WPU复合系统的结果不同。还测试了WPU / f-ZnO复合膜对大肠杆菌和金黄色葡萄球菌的抗菌活性。结果表明,随着f-ZnO含量的增加,抗菌活性增强,在f-ZnO含量为4.0 wt%时,抗菌效果最佳。

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