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Antibacterial Activity of Nanocomposites of Copper and Cellulose

机译:铜和纤维素纳米复合材料的抗菌活性

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摘要

The design of cheap and safe antibacterial materials for widespread use has been a challenge in materials science. The use of copper nanostructures combined with abundant biopolymers such as cellulose offers a potential approach to achieve such materials though this has been less investigated as compared to other composites. Here, nanocomposites comprising copper nanofillers in cellulose matrices have been prepared by in situ and ex situ methods. Two cellulose matrices (vegetable and bacterial) were investigated together with morphological distinct copper particulates (nanoparticles and nanowires). A study on the antibacterial activity of these nanocomposites was carried out for Staphylococcus aureus and Klebsiella pneumoniae, as pathogen microorganisms. The results showed that the chemical nature and morphology of the nanofillers have great effect on the antibacterial activity, with an increase in the antibacterial activity with increasing copper content in the composites. The cellulosic matrices also show an effect on the antibacterial efficiency of the nanocomposites, with vegetal cellulose fibers acting as the most effective substrate. Regarding the results obtained, we anticipate the development of new approaches to prepare cellulose/copper based nanocomposites thereby producing a wide range of interesting antibacterial materials with potential use in diverse applications such as packaging or paper coatings.
机译:廉价和安全的抗菌材料的广泛应用设计一直是材料科学领域的挑战。铜纳米结构与丰富的生物聚合物(如纤维素)的结合使用提供了一种实现此类材料的潜在方法,尽管与其他复合材料相比,该方法的研究较少。在此,已经通过原位和非原位方法制备了纤维素基质中包含铜纳米填料的纳米复合材料。研究了两种纤维素基质(植物和细菌)以及形态独特的铜颗粒(纳米颗粒和纳米线)。研究了这些纳米复合材料对金黄色葡萄球菌和肺炎克雷伯菌的抗菌活性。结果表明,纳米填料的化学性质和形态对抗菌活性有很大影响,随着复合物中铜含量的增加,抗菌活性也随之增加。纤维素基质也显示出对纳米复合材料抗菌作用的影响,其中植物纤维素纤维是最有效的底物。关于获得的结果,我们预计将开发制备纤维素/铜基纳米复合材料的新方法,从而生产出多种有趣的抗菌材料,并有可能在包装或纸张涂料等各种应用中使用。

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