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Bacterial Growth and Death on Cotton Fabrics Conformally Coated with ZnO Thin Films of Varying Thicknesses via Atomic Layer Deposition (ALD)

机译:通过原子层沉积(ALD)共同地涂覆不同厚度的ZnO薄膜的棉织物的细菌生长和死亡

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摘要

Hospital fabrics are commonly exposed to multiple patients and contaminated surfaces between washing/sterilization cycles. Consequently, these textiles act as vectors for the spread of diseases, especially bacterial pathogens. Many modification schemes have been proposed to mitigate the growth and spread of bacteria on fabrics, including use of antimicrobial metal oxide nanoparticles. The aim of this study is to examine the effectiveness of conformal nanoscale ZnO coatings applied to cotton fabrics via atomic layer deposition to control bacterial spread. We find that, at low ZnO loading fractions, bacteria metabolize Zn2+ ions and reproduce more rapidly. However, as the ZnO loading is increased, the higher concentrations of Zn2+ overwhelm the bacteria and the nanocoatings become effective antibacterial treatments, killing all bacteria present. These results map out an important design space for implementing ZnO coatings as a potential antimicrobial treatment for textiles and other surfaces.
机译:医院织物通常暴露于多个患者和洗涤/灭菌循环之间的污染表面。因此,这些纺织品充当疾病的传播,尤其是细菌病原体的载体。已经提出了许多改进方案以减轻织物上细菌的生长和扩散,包括使用抗微生物金属氧化物纳米颗粒。本研究的目的是通过原子层沉积检查应用于棉织物的保形纳米级ZnO涂层的有效性以控制细菌扩散。我们发现,在低ZnO装载分数中,细菌代谢Zn2 +离子并更快地繁殖。然而,随着ZnO负荷增加,Zn2 +压力较高浓度的细菌和纳米织物成为有效的抗菌治疗,杀死所有存在的细菌。这些结果将ZnO涂层的重要设计空间绘制为纺织品和其他表面的潜在抗微生物处理。

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