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环氧硅烷/粘土纳米复合材料在银基抗菌薄膜涂层中的应用:合成与结构表征。

Epoxy-silica/clay nanocomposite for silver-based antibacterial thin coatings: Synthesis and structural characterization.

机构信息

Instituto de Investigación en Ciencia y Tecnología de Materiales (INTEMA), CONICET-UNMdP, Av. Juan B. Justo 4302, B7608FDQ Mar del Plata, Argentina.

Instituto de Investigación en Ciencia y Tecnología de Materiales (INTEMA), CONICET-UNMdP, Av. Juan B. Justo 4302, B7608FDQ Mar del Plata, Argentina.

出版信息

J Colloid Interface Sci. 2017 Dec 15;508:332-341. doi: 10.1016/j.jcis.2017.08.058. Epub 2017 Aug 18.

Abstract

Development of new functional coatings in the field of health care, as antibacterial applications, deals with a straight control of the diffusive properties that rules the releasing of the active component. In this work, the development of a silver-rich nanocomposite thin coating, loaded with organically modified clay nanoparticles, is presented. The synthesis process included an environment-friendly silanization process of clay nanoparticles (Laponite® S482) with (3-glycidoxypropyl)trimethoxysilane (GPTMS) and the further hydrolytic condensation with tetraethoxysilane (TEOS). Silanization process and the obtained coatings were analysed by Fourier transformed infrared spectroscopy, UV-visible spectroscopy, X-ray diffraction, thermogravimetric curves and scanning electron microscopy. The silanization process of clay nanoparticles with the organically reactive alkyl alkoxysilane, allowed to stabilize and exfoliate the clay nanosheets within a hybrid organic-inorganic sol-gel material. Ring opening of grafted epoxy groups carried to an increasing of the basal spacing, of intercalated clay nanosheets, from 1.3 to 1.8nm. Moreover, incorporation of organically modified clay nanosheets introduced a significant stabilization on the development of silver nanoparticles inside the structure of the nanocomposite coating, retaining the silver inside the coating material and restricting the growing of silver nanoparticles on the surface of the coating. Antibacterial behaviour, against E. coli cultures, performed through agar diffusion tests, provided promising results that allow assuming that the studied nanocomposite coating serves as a reservoir of ionic silver, permitting the antibacterial effect.

摘要

在医疗保健领域开发新的功能涂层,如抗菌应用,直接涉及控制扩散性能,从而控制活性成分的释放。在这项工作中,提出了一种富含银的纳米复合薄膜涂层的开发,该涂层负载有有机改性粘土纳米颗粒。合成过程包括粘土纳米颗粒(Laponite® S482)与(3-缩水甘油丙基)三甲氧基硅烷(GPTMS)的环保硅烷化过程,以及与四乙氧基硅烷(TEOS)的进一步水解缩合。通过傅里叶变换红外光谱、紫外-可见光谱、X 射线衍射、热重曲线和扫描电子显微镜对粘土纳米颗粒的硅烷化过程和所得涂层进行了分析。有机反应性烷基烷氧基硅烷对粘土纳米颗粒的硅烷化过程,允许在有机-无机杂化溶胶-凝胶材料中稳定和剥离粘土纳米片。接枝环氧基团的开环导致插层粘土纳米片的基面间距从 1.3nm 增加到 1.8nm。此外,有机改性粘土纳米片的掺入在纳米复合涂层的结构中引入了对银纳米粒子的显著稳定性,将银保留在涂层材料内部,并限制了银纳米粒子在涂层表面的生长。通过琼脂扩散试验对大肠杆菌培养物进行的抗菌性能测试提供了有希望的结果,这表明所研究的纳米复合涂层可以作为离子银的储库,从而实现抗菌效果。

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