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Self-cleaning antimicrobial surfaces by bio-enabled growth of SnO2 coatings on glass

机译:自洁抗菌表面由bio-enabled SnO2涂料玻璃上的增长

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摘要

Conventional vapor-deposition techniques for coatings require sophisticated equipment and/or high-temperature resistant substrates. Therefore bio-inspired techniques for the fabrication of inorganic coatings have been developed in recent years. Inspired by the biology behind the formation of the intricate skeletons of diatoms orchestrated by a class of cationic polyamines (silaffins) we have used surface-bound spermine, a naturally occurring polyamine, to promote the fast deposition of homogeneous, thin and transparent biomimetic SnO2 coatings on glass surfaces. The bio-enabled SnO2 film is highly photoactive, ;'.e. it generates superoxide radicals (O_2~-) upon sunlight exposure resulting in a strong degradation of organic contaminants and a strong antimicrobial activity. Upon illumination the biomimetic SnO2 coating exhibits a switchable amphiphilic behavior, which - in combination with its photoactivity - creates a self-cleaning surface. The intrinsic self-cleaning properties could lead to the development of new protective, antifouling coatings on various substrates.
机译:传统的气相沉积技术涂层和/或需要复杂的设备耐高温基质。仿生技术的制造无机涂料开发最近年。硅藻的错综复杂的骨骼的形成策划的一类阳离子聚胺类(silaffins)我们使用表面束缚精胺,一种天然的聚胺,促进快速沉积均匀、薄玻璃透明的仿生SnO2涂料表面。感光性的,即。激进分子(成分~ -)在阳光照射产生的在一个强大的降解有机污染物和一个强大的抗菌活性。照明仿生SnO2涂层展品——在一个可切换的两亲性行为结合其光敏——创建一个自清洁表面。自洁特性可能导致的开发新的防护,防污涂料在不同基质。

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