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Atmospheric Pressure Plasma Polymerized 2-Ethyl-2-oxazoline Based Thin Films for Biomedical Purposes

机译:大气压等离子体聚合的2-乙基-2-恶唑啉基薄膜用于生物医学目的

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摘要

Polyoxazoline thin coatings were deposited on glass substrates using atmospheric pressure plasma polymerization from 2-ethyl-2-oxazoline vapours. The plasma polymerization was performed in dielectric barrier discharge burning in nitrogen at atmospheric pressure. The thin films stable in aqueous environments were obtained at the deposition with increased substrate temperature, which was changed from 20 ∘C to 150 ∘C. The thin film deposited samples were highly active against both S. aureus and E. coli strains in general. The chemical composition of polyoxazoline films was studied by FTIR and XPS, the mechanical properties of films were studied by depth sensing indentation technique and by scratch tests. The film surface properties were studied by AFM and by surface energy measurement. After tuning the deposition parameters (i.e., monomer flow rate and substrate temperature), stable films, which resist bacterial biofilm formation and have cell-repellent properties, were achieved. Such antibiofouling polyoxazoline thin films can have many potential biomedical applications.
机译:使用来自2-乙基-2-恶唑啉蒸汽的大气压血浆聚合,在玻璃基板上沉积多氧唑啉薄涂层。在大气压下在氮气中燃烧的介电阻挡放电进行等离子体聚合。在沉积中获得含水环境中稳定的薄膜,其底物温度增加,其从20μC变为150℃。薄膜沉积的样品通常对S.UUREUS和大肠杆菌菌株非常有效。通过FTIR和XPS研究了多恶唑啉膜的化学成分,通过深度传感凹口技术和通过划痕试验研究薄膜的机械性能。通过AFM和表面能测量研究薄膜表面性质。在调整沉积参数(即单体流速和衬底温度)之后,实现了抗抵抗细菌生物膜形成并具有细胞排斥性能的稳定薄膜。这种抗化聚恶唑啉薄膜可具有许多潜在的生物医学应用。

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