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Development of Nanocomposites Reinforced with Carboxylated Poly(ether ether ketone) Grafted to Zinc Oxide with Superior Antibacterial Properties

机译:具有优异抗菌性能的氧化锌接枝的羧化聚醚醚酮增强纳米复合材料的开发

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Novel poly(ether ether ketone) (PEEK) based nanocomposites have been fabricated via melt-blending by addition of a carboxylated polymer derivative covalently grafted onto the surface of hydroxyl-terminated ZnO nanoparticles. Their morphology, thermal, mechanical, tribological, and antibacterial properties have been analyzed and compared with those of composites reinforced with pristine ZnO. The Fourier transform infrared (FT-IR.) spectra corroborate the success of the grafting reaction, showing the appearance of signals related to ester linkages. Microscopic observations demonstrate that the polymer grafting improves the nanoparticle dispersion within the matrix. A progressive rise in thermal stability and flame retardant ability is found with increasing ZnO concentration, with an exceptional increment in the maximum degradation rate temperature of 70 °C at 5.0 wt % loading. The crystallization and melting temperature of PEEK decrease upon incorporation of the grafted nanofillers, attributed to the restrictions on polymer chain mobility and crystal growth imposed by the strong ZnO-matrix interactions. Nanocomposites with polymer-grafted nanoparticles exhibit higher stiffness, strength, ductility, toughness and glass transition temperature whilst lower coefficient of friction and wear rate than the neat polymer and composites with bare ZnO. Further, they show superior antibacterial activity against both the Gram-negative Escherichia coli and the Gram-positive Staphylococcus aureus bacteria. The antimicrobial effect increases upon raising nanoparticle content, and is stronger on E, coli. The approach used in this work is a simple, scalable, and efficient method to improve the performance of PEEK/ZnO nanocomposites for use in biomedical applications such as trauma, orthopedics, and spinal implants.
机译:通过添加共价接枝到羟基封端的ZnO纳米粒子表面的羧化聚合物衍生物,通过熔融共混制备了新型的聚醚醚酮(PEEK)基纳米复合材料。分析了它们的形态,热,机械,摩擦学和抗菌性能,并将其与原始ZnO增强的复合材料进行了比较。傅里叶变换红外光谱(FT-IR。)证实了接枝反应的成功,显示了与酯键相关的信号的出现。显微镜观察表明,聚合物接枝改善了纳米颗粒在基质内的分散。随着ZnO浓度的增加,热稳定性和阻燃能力逐渐提高,在5.0 wt%的负载下,最大降解速率温度达到70°C时出现异常增加。引入接枝的纳米填料后,PEEK的结晶和熔融温度降低,这归因于强的ZnO-基质相互作用对聚合物链迁移率和晶体生长的限制。与纯聚合物和具有裸露ZnO的复合材料相比,具有聚合物接枝纳米颗粒的纳米复合材料具有更高的刚度,强度,延展性,韧性和玻璃化转变温度,而摩擦系数和磨损率则更低。此外,它们对革兰氏阴性大肠杆菌和革兰氏阳性金黄色葡萄球菌均显示出优异的抗菌活性。随着纳米颗粒含量的增加,抗菌作用增强,对大肠杆菌的抗菌作用更强。这项工作中使用的方法是一种简单,可扩展且有效的方法,可以改善PEEK / ZnO纳米复合材料的性能,以用于生物医学应用,例如创伤,骨科和脊柱植入物。

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