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Enabling Antibacterial Coating via Bioinspired Mineralization of Nanostructured ZnO on Fabrics under Mild Conditions

机译:通过在温和条件下在织物上通过生物启发矿化纳米结构ZnO来实现抗菌涂层

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摘要

Herein, we present an environmentally benign method capable of mineralization and deposition of nanomaterials to introduce antibacterial functionalities into cotton fabrics under mild conditions. Similar to the way in which many naturally occurring biominerals evolve around the living organism under ambient conditions, this technique enables flexible substrates like the cotton fabric to be coated with inorganic-based functional materials. Specifically, our strategy involves the use of long-chain polyamines known to be responsible in certain biomineralization processes, to nucleate, organize, and deposit nanostructured ZnO on cotton bandage in an aqueous solution under mild conditions of room temperature and neutral pH. The ZnO-coated cotton bandages as characterized by SEM, confocal micro-Raman spectroscopy, XRD, UV-DRS, and fluorescence microscopy demonstrate the importance of polyamine in generating a stable and uniform coating of spindle-shaped ZnO particles on individual threads of the fabric. As the coating process requires only mild conditions, it avoids any adverse effect on the thermal and mechanical properties of the substrate. Furthermore, the ZnO particles on cotton fabric show efficient antibacterial activity against both gram-positive and gram-negetive bacteria. Therefore, the developed polyamine mediated bioinspired coating method provides not only a facile and "green" synthesis for coating on flexible substrate but also the fabrication of antibacterial enabled materials for healthcare applications.
机译:在这里,我们提出了一种环境友好的方法,该方法能够矿化和沉积纳米材料,以在温和的条件下将抗菌功能引入棉织物。与许多自然存在的生物矿物质在环境条件下在生物周围进化的方式类似,该技术使诸如棉织物之类的柔性基材可以涂覆无机基功能材料。具体而言,我们的策略涉及使用已知在某些生物矿化过程中起作用的长链多胺,在室温和中性pH的温和条件下,在水溶液中的棉绷带上成核,组织和沉积纳米结构ZnO。通过SEM,共聚焦显微拉曼光谱,XRD,UV-DRS和荧光显微镜表征的ZnO包被的棉绷带证明了多胺在织物单根线上形成纺锤状ZnO颗粒的稳定均匀涂层的重要性。由于涂覆过程仅需要温和的条件,因此可以避免对基材的热和机械性能产生任何不利影响。此外,棉织物上的ZnO颗粒对革兰氏阳性和革兰氏阴性细菌均显示出有效的抗菌活性。因此,开发的多胺介导的生物启发涂层方法不仅提供了在柔性基材上进行涂层的简便且“绿色”的合成方法,而且还为医疗保健应用提供了具有抗菌功能的材料。

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