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基于分层纳米结构的超憎水、透明、抗反射表面。

Superomniphobic, transparent, and antireflection surfaces based on hierarchical nanostructures.

机构信息

Corning Incorporated , Sullivan Park, Corning, New York 14831, United States.

出版信息

Nano Lett. 2014 Aug 13;14(8):4677-81. doi: 10.1021/nl501767j. Epub 2014 Jul 10.

Abstract

Optical surfaces that can repel both water and oil have much potential for applications in a diverse array of technologies including self-cleaning solar panels, anti-icing windows and windshields for automobiles and aircrafts, low-drag surfaces, and antismudge touch screens. By exploiting a hierarchical geometry made of two-tier nanostructures, primary nanopillars of length scale ∼ 100-200 nm superposed with secondary branching nanostructures made of nanoparticles of length scale ∼ 10-30 nm, we have achieved static contact angles of more than 170° and 160° for water and oil, respectively, while the sliding angles were lower than 4°. At the same time, with respect to the initial flat bare glass, the nanotextured surface presented significantly reduced reflection (<0.5%), increased transmission (93.8% average over the 400 to 700 nm wavelength range), and very low scattering values (about 1% haze). To the authors' knowledge, these are the highest optical performances in conjunction with superomniphobicity reported to date in the literature. The primary nanopillars are monolithically integrated in the glass surface using lithography-free metal dewetting followed by reactive ion etching,1 while the smaller and higher surface area branching structure made of secondary nanoparticles are deposited by the NanoSpray2 combustion chemical vapor deposition (CCVD).

摘要

具有防水和防油双重功能的光学表面在许多技术领域都有很大的应用潜力,包括自清洁太阳能电池板、汽车和飞机的防冰窗户和挡风玻璃、低阻力表面以及防污触摸屏。通过利用由两级纳米结构组成的分层几何形状,我们实现了静态接触角分别超过 170°和 160°,用于水和油,而滑动角低于 4°。同时,与初始的平坦裸玻璃相比,纳米结构化表面的反射率显著降低(<0.5%),透光率(400 到 700nm 波长范围内平均为 93.8%)增加,并且散射值非常低(约 1%的雾度)。据作者所知,这些是迄今为止文献中报道的具有超疏水性的最高光学性能。使用无光刻的金属去湿随后进行反应离子刻蚀,将主要的纳米柱整体集成到玻璃表面上,1 而由二级纳米粒子组成的较小且具有更高表面积的分支结构则通过 NanoSpray2 燃烧化学气相沉积(CCVD)进行沉积。

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