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Silica Nanoparticles Functionalized with Zwitterionic Sulfobetaine Siloxane for Application as a Versatile Antifouling Coating System

机译:用两性离子磺基乙酸硅氧烷官能化的二氧化硅纳米粒子作为一种通用的防污涂料系统

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摘要

The growing need to develop surfaces able to effectively resist biological fouling has resulted in the widespread investigation of nanomaterials with potential antifouling properties. However, the preparation of effective antifouling coatings is limited by the availability of reactive surface functional groups and our ability to carefully control and organize chemistries at a materialsu27 interface. Here, we present two methods of preparing hydrophilic low-fouling surface coatings through reaction of silica-nanoparticle suspensions and predeposited silicananoparticle films with zwitterionic sulfobetaine (SB). Silica-nanoparticle suspensions were functionalized with SB across three pH conditions and deposited as thin films via a simple spin-coating process to generate hydrophilic antifouling coatings. In addition, coatings of predeposited silica nanoparticles were surface functionalized via exposure to zwitterionic solutions. Quartz crystal microgravimetry with dissipation monitoring was employed as a high throughput technique for monitoring and optimizing reaction to the silica-nanoparticle surfaces. Functionalization of nanoparticle films was rapid and could be achieved over a wide pH range and at low zwitterion concentrations. All functionalized particle surfaces presented a high degree of wettability and resulted in large reductions in adsorption of bovine serum albumin protein. Particle coatings also showed a reduction in adhesion of fungal spores (Epicoccum nigrum) and bacteria (Escherichia coli) by up to 87 and 96%, respectively. These results indicate the potential for functionalized nanosilicas to be further developed as versatile fouling-resistant coatings for widespread coating applications.
机译:不断增长的需要开发能够有效抵抗生物污垢的表面导致纳米材料具有潜在的防污性能的广泛研究。然而,制备有效的防污涂层受反应性表面官能团的可用性的限制,以及我们在材料 U27界面处小心控制和组织化学能力的限制。在这里,我们提出了通过二氧化硅纳米粒子悬浮液的反应和用两性离子磺酸(Sb)的反应来制备亲水性低污染表面涂层的两种方法。二氧化硅纳米颗粒悬浮液在三个pH条件下用Sb官能化,并通过简单的旋涂方法作为薄膜沉积以产生亲水性防污涂层。此外,预沉积的二氧化硅纳米粒子的涂层是通过暴露于两性离子溶液官能化的表面化。使用耗散监测的石英晶微粒为高通量技术,用于监测和优化对二氧化硅纳米粒子表面的反应。纳米粒子膜的官能化快速,可以在宽的pH范围和低两性离子浓度上实现。所有官能化的颗粒表面都呈现出高度的润湿性,并导致牛血清白蛋白蛋白的吸附量大降低。颗粒涂层还表明,真菌孢子孢子(癫痫烟囱)和细菌(大肠杆菌)的粘附程度分别降低至多87和96%。这些结果表明官能化纳米硅的电位进一步开发成用于广泛涂料应用的多功能污垢涂层。

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