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Eco-friendly nanocomposites derived from geranium oil and zinc oxide in one step approach

机译:一步法衍生自天竺葵油和氧化锌的环保纳米复合材料

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摘要

Nanocomposites offer attractive and cost-effective thin layers with superior properties for antimicrobial, drug delivery and microelectronic applications. This work reports single-step plasma-enabled synthesis of polymer/zinc nanocomposite thin films via co-deposition of renewable geranium essential oil-derived polymer and zinc nanoparticles produced by thermal decomposition of zinc acetylacetonate. The chemical composition, surfaces characteristics and antimicrobial performance of the designed nanocomposite were systematically investigated. XPS survey proved the presence of ZnO in the matrix of formed polymers at 10 W and 50 W. SEM images verified that the average size of a ZnO nanoparticle slightly increased with an increase in the power of deposition, from approximately 60 nm at 10 W to approximately 80 nm at 50 W. Confocal scanning laser microscopy images showed that viability of S. aureus and E.coli cells significantly reduced on surfaces of ZnO/polymer composites compared to pristine polymers. SEM observations further demonstrated that bacterial cells incubated on Zn/Ge 10 W and Zn/Ge 50 W had deteriorated cell walls, compared to pristine polymers and glass control. The release of ZnO nanoparticles from the composite thin films was confirmed using ICP measurements, and can be further controlled by coating the film with a thin polymeric layer. These eco-friendly nanocomposite films could be employed as encapsulation coatings to protect relevant surfaces of medical devices from microbial adhesion and colonization.
机译:纳米复合材料可提供具有吸引力的,具有成本效益的薄层,并具有出色的性能,可用于抗菌,药物输送和微电子应用。这项工作报告了通过共沉积可再生天竺葵精油衍生的聚合物和乙酰丙酮锌锌热分解产生的锌纳米颗粒的单步等离子体合成聚合物/锌纳米复合薄膜的方法。系统地研究了所设计纳米复合材料的化学组成,表面特性和抗菌性能。 XPS调查证明,在10 W和50 W的条件下,形成的聚合物基质中存在ZnO。SEM图像证实,ZnO纳米粒子的平均尺寸随沉积力的增加而略有增加,从10 W时的约60 nm增大至10W。在50 W下约80 nm。共聚焦扫描激光显微图像显示,与原始聚合物相比,ZnO /聚合物复合材料表面金黄色葡萄球菌和大肠杆菌细胞的活力显着降低。 SEM观察进一步证明,与原始聚合物和玻璃样对照相比,在Zn / Ge 10 W和Zn / Ge 50 W上培养的细菌细胞的细胞壁已经变质。 ZnO纳米粒子从复合薄膜中的释放已通过ICP测量得到证实,并可通过在薄膜上涂覆一层薄的聚合物层来进一步控制。这些生态友好的纳米复合薄膜可以用作封装涂层,以保护医疗器械的相关表面免受微生物的粘附和侵袭。

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