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Assembly of surface-independent polyphenol/liquid gallium composite nanocoatings

机译:组装不依赖表面的多酚/液态镓复合纳米涂层

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摘要

The development of functional nanocoatings using natural compounds is a hallmark of sustainable strategies in the field of green synthesis. Herein, we report a surface-independent nanocoating strategy using natural polyphenols and gallium-based room temperature liquid metal nanoparticles. The nanocoating matrix is composed of tannic acid, crosslinked with group (IV) transition metal ions. Liquid gallium nanoparticles are incorporated into the coatings as a gallium ion releasing depot. The coating deposition is rapid and can be applied to a range of substrates including glass, plastics, paper, and metal surfaces, owing to the versatile adhesive nature of the catechol/gallol functional groups of tannic acid. The coating thickness can be controlled from 100 to 700 nm and the content of liquid gallium nanoparticles can be modulated. This enables the tunable release behaviour of gallium ions into the surrounding from the composite coatings. The coatings are highly biocompatible and display antioxidant and antibacterial properties that can be useful for diverse applications.
机译:的发展功能nanocoatings使用天然化合物是可持续发展的一个特点战略领域的绿色合成。在此,我们报告一个表面积使用天然多酚nanocoating策略和镓基室温液态金属纳米粒子。丹宁酸、交联集团(IV)过渡金属离子。纳米粒子添加到涂料作为一个镓离子释放得宝。沉积是快速,可以应用到一个范围的基板,包括玻璃、塑料、纸张、和金属表面,由于多才多艺胶粘剂的性质儿茶酚/ gallol功能丹宁酸组。从100年到700年控制纳米和内容液体镓纳米粒子可以调制。这使得可调的释放行为镓离子的周围复合涂层。生物相容性和抗氧化和显示抗菌性能,可能是有用的不同的应用程序。

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