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A Mechanistic Explanation of the Peculiar Amphiphobic Properties of Hybrid Organic-Inorganic Coatings by Combining XPS Characterization and DFT Modeling

机译:XPS表征与DFT建模相结合的有机-无机杂化涂层奇异两性性质的机理解释

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摘要

We report a combined X-ray photoelectron spectroscopy and theoretical modeling analysis of hybrid functional coatings constituted by fluorinated allcylsilane monolayers covalently grafted on a nanostructured ceramic oxide (Al2O3) thin film deposited on aluminum alloy substrates. Such engineered surfaces, bearing hybrid coatings obtained via a classic sol gel route, have been previously shown to possess amphiphobic behavior (superhydrophobicity plus oleophobicity) and excellent durability, even under simulated severe working environments. Starting from XPS, SEM, and contact angle results and analysis, and combining it with DFT results, the present investigation offers a first mechanistic explanation at a molecular level of the peculiar properties of the hybrid organic inorganic coating in terms of composition and surface structural arrangements. Theoretical modeling shows that the active fluorinated moiety is strongly anchored on the alumina sites with single Si-O-Al bridges and that the residual valence of Si is saturated by Si-O Si bonds which form a reticulation with two vicinal fluoroalkylsilanes. The resulting hybrid coating consists of stable rows of fluorinated alkyl chains in reciprocal contact, which form well-ordered and packed monolayers.
机译:我们报告了结合的X射线光电子能谱和混合功能涂层的理论模型分析,该涂层由共价接枝在沉积在铝合金基板上的纳米结构陶瓷氧化物(Al2O3)薄膜上的氟化烷基硅烷单层构成。这种经过工程处理的表面带有通过经典溶胶凝胶途径获得的混合涂层,即使在模拟的严酷工作环境下,以前也已显示出具有两亲性(超疏水性和疏油性)和出色的耐久性。从XPS,SEM和接触角结果与分析开始,并将其与DFT结果结合起来,本研究在分子水平上从成分和表面结构排列的角度对杂化有机无机涂料的特殊性能进行了首次机理解释。 。理论模型表明,活性氟化部分通过单个Si-O-Al桥牢固地锚固在氧化铝位点上,Si的剩余价数被Si-O Si键饱和,后者与两个邻位氟代烷基硅烷形成网状结构。所得的杂化涂层由相互接触的稳定的氟化烷基链排组成,它们形成有序且堆积的单层。

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