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Influence of TiO2 nanostructures on anti-adhesion and photoinduced bactericidal properties of thin film composite membranes

机译:TiO2纳米结构对薄膜复合膜抗粘附和光致杀菌性能的影响

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摘要

This work investigates the influence of TiO2 nanostructures on the anti-adhesion and photoinduced bactericidal properties of thin film composite (TFC) membranes. TiO2 nanostructures with different morphologies, nanoparticle size, and crystalline phase contents were incorporated within the membrane structure during the interfacial polymerization process. The membranes were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), atomic force microscopy (AFM), and contact angle measurements. Bacterial anti-adhesion tests were performed using Escherichia coli. Bacteria suspensions were incubated in the presence of the modified membranes under three different conditions (dark, UV, and visible light) with the aim to induce photoactivation of the TiO2 nanostructures. The anti-adhesion properties of the membranes were confirmed by fluorescence microscopy using a live/dead bacterial viability kit. XRD, SEM, and EDX analyses confirmed that the TiO2 nanostructures were incorporated into the membrane. This incorporation resulted in TFC membranes exhibiting excellent bacterial anti-adhesion properties, as well as marked bactericidal activity. The anti-adhesion effect can be attributed to the physicochemical properties of the modified membrane surface (mainly hydrophilicity) and the bactericidal effect on the membrane surface was attributed to the photoactivation of TiO2 nanostructures upon irradiation, mainly by UV light. The influence of the morphology and the dispersion capacities of the TiO2 nanostructures on anti-adhesion and photoinduced bactericidal properties of TFC membranes were evidenced. The incorporation of a mixture of nanoparticles and nanorods into the TFC membrane reached higher hydrophilicity, lower roughness and uniform dispersion on the surface membrane improving the anti-adhesion capability and the bacterial degradation performance upon irradiation.
机译:这项工作调查的TiO 2纳米结构上的抗粘附的影响和光敏反应的薄膜复合(TFC)的膜的杀菌性能。纳米结构的TiO 2具有不同形态,纳米颗粒尺寸和结晶相的内容物时的界面聚合过程中的膜结构内引入。通过X射线衍射(XRD)的膜进行了表征,扫描电子显微镜(SEM),能量分散X射线光谱(EDX),原子力显微镜(AFM),和接触角测量。细菌抗粘附试验使用大肠杆菌进行。细菌悬浮液在改性膜的三种不同的条件下(黑暗,UV和可见光),目的下存在下培养,以诱导在TiO 2的纳米结构的光活化。膜的防粘连性质通过荧光显微术使用活/死细菌活力试剂盒确认。 XRD,SEM及EDX分析证实,在TiO 2的纳米结构被纳入膜。这种掺入导致TFC膜表现出优异的细菌的抗粘附性能,以及标记的杀菌活性。防粘连效果可以归因于所述修饰的膜表面(主要是亲水性)和在膜表面上的杀菌效果的物理化学性质是由于二氧化钛的纳米结构的照射时光活化,主要由UV光。的形态和在TiO 2纳米结构上的防粘连和TFC膜的光诱导杀菌性能的分散能力的影响进行了证明。纳米粒子和纳米棒到TFC膜的混合物掺入达到更高的亲水性,低粗糙度和均匀分散在表面薄膜提高抗粘连性能和在照射后的细菌降解性能。

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  • 来源
    《RSC Advances》 |2016年第86期|共8页
  • 作者单位

    Univ Chile AMTC Santiago Chile;

    Univ Valle Dept Fis Cali Colombia;

    Univ Chile Dept Ingn Quim &

    Biotecnol Santiago Chile;

    Univ Chile AMTC Santiago Chile;

    Univ Chile AMTC Santiago Chile;

    Univ Chile Dept Ciencia Mat Santiago Chile;

    Univ Tecn Federico Santa Maria Dept Fis Valparaiso Chile;

    Pontificia Univ Catolica Chile Inst Fis Santiago Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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