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Non-thermal plasma technology for the development of antimicrobial surfaces: a review

机译:用于抗菌表面开发的非热等离子体技术:综述

摘要

Antimicrobial coatings are in high demand in many fields including the biomaterials and healthcare sectors. Within recent progress in nanoscience and engineering at the nanoscale, preparation of nanocomposite films containing metal nanoparticles ( such as silver nanoparticles, copper nanoparticles, zinc oxide nanoparticles) is becoming an important step in manufacturing biomaterials with high antimicrobial activity. Controlled release of antibiotic agents and eliminating free nanoparticles are of equal importance for engineering antimicrobial nanocomposite materials. Compared to traditional chemical 'wet' methods, plasma deposition and plasma polymerization are promising approaches for the fabrication of nanocomposite films with the advantages of gas phase dry processes, effective use of chemicals and applicability to various substrates. In this article, we present a short overview of state-of-the-art engineering of antimicrobial materials based on the use of non-thermal plasmas at low and atmospheric pressure.
机译:在许多领域,包括生物材料和医疗保健领域,对抗菌涂料的需求都很高。在纳米级纳米科学和工程学的最新进展中,包含金属纳米颗粒(例如银纳米颗粒,铜纳米颗粒,氧化锌纳米颗粒)的纳米复合膜的制备正成为制造具有高抗菌活性的生物材料的重要步骤。对于工程抗菌纳米复合材料,控制释放抗生素和消除游离的纳米颗粒具有同等重要的意义。与传统的化学“湿法”相比,等离子体沉积和等离子体聚合是制备纳米复合薄膜的有前途的方法,其优点是具有气相干法,有效使用化学药品以及适用于各种基材的优点。在本文中,我们基于在低压和大气压下使用非热等离子体的简要介绍了抗菌材料的最新技术。

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