4.6 Article

Transparent superhydrophobic films possessing high thermal stability and improved moisture resistance from the deposition of MTMS-based aerogels

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DOI: 10.1016/j.colsurfa.2013.11.027

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Transparent; Superhydrophobic; Silica; Aerogel; Sol-gel

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Highly transparent superhydrophobic silica aerogel films with high water contact angle (>160 degrees) and lowsliding angle (< 5 degrees) were prepared by using methyltrimethoxysilane (MTMS) as precursor based on asimple sol-gel process. The influences of different solvent amount on the superhydrophobicity, microstructure, N-2 adsorption-desorption behavior and pore size distribution of as-preparedfilms were discussed herein to get the film with optimum performance. The optimum film exhibits superhydrophobicity (CA, 161 degrees and SA, 4 degrees), high transparency (transmittance closes to 90%) and good thermal stability (up to 500 degrees C). Note that the optimum film directly from sol-gel process exhibits poor moisture resistance. The low density, high volume-fraction porosity structure and methyl groups on the surface are the cause of superhydrophobicity of the film. Low density and high volume-fraction porosity structure are also responsible for the thermal stability of the as-prepared film, and the poor moisture resistance is ascribed to the untreated hydroxyl groups on the surface of the film. The moisture resistance of film can be improved by further treatment with cetyltrimethoxysilane (CTMS). The film switches from superhydrophobic (161 degrees) to superhydrophilic (0 degrees) after heat-treated at 600 degrees (C) 2013 Elsevier B.V. All rights reserved.

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