4.7 Article

Hydrophobic/Oleophilic Structures Based on MacroPorous Silicon: Effect of Topography and Fluoroalkyl Silane Functionalization on Wettability

期刊

NANOMATERIALS
卷 11, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/nano11030670

关键词

macroporous silicon; perfluoro-silane; wettability; hydrophobic; oleophilic; contact angle

资金

  1. Spanish Ministerio de Ciencia, Innovacion y Universidades (MICINN/FEDER) [RTI2018-094040-B-I00]
  2. Agency for Management of University and Research Grants (AGAUR) [2017-SGR-1527]
  3. Catalan Institution for Research and Advanced Studies (ICREA) under the ICREA Academia Award

向作者/读者索取更多资源

The research analyzed the influence of surface morphology and chemical composition on the wettability of porous silicon structures, showing that perfluoro-silane functionalized silicon surfaces had higher contact angles. The study also established the effect of porosity on the surface wettability of macroporous silicon structures. The combination of etching conditions with surface chemistry modification could lead to hydrophobic/oleophilic or superhydrophobic/oleophobic structures.
The effect of the morphology and chemical composition of a surface on the wettability of porous silicon structures is analyzed in the present work. Hydrophobic and superhydrophobic macroporous substrates are attractive for different potential applications. Herein, different hydrophobic macroporous silicon structures were fabricated by the chemical etching of p-type silicon wafers in a solution based on hydrofluoric acid and coated with a fluoro silane self-assembled monolayer. The surface morphology of the final substrate was characterized using a scanning electron microscope. The wettability was assessed from contact angle measurements using water and organic solvents that present low surface energy. The experimental data were compared with the classical wetting states theoretical models described in the literature. Perfluoro-silane functionalized macroporous silicon surfaces presented systematically higher contact angles than untreated silicon substrates. The influence of porosity on the surface wettability of macoporous silicon structures has been established. These results suggest that the combination of etching conditions with a surface chemistry modification could lead to hydrophobic/oleophilic or superhydrophobic/oleophobic structures.

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