Preparation of high transparent hydrophobic glass surface and its self-cleaning property

Transparent hydrophobic glass materials had played an important role in our daily life, but some problems such as complex or expensive manufacturing processes, poor wear resistance and opacity limited its applications. In this paper, a composite silica sol composed of modified SiO 2 nanoparticles an...

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Veröffentlicht in:Journal of sol-gel science and technology 2024-07, Vol.111 (1), p.61-72
Hauptverfasser: Li, Jiefang, Kong, Que, Zhang, Dan, Li, Zhiguang
Format: Artikel
Sprache:eng
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Zusammenfassung:Transparent hydrophobic glass materials had played an important role in our daily life, but some problems such as complex or expensive manufacturing processes, poor wear resistance and opacity limited its applications. In this paper, a composite silica sol composed of modified SiO 2 nanoparticles and transparent special water-based silicone resin was prepared. An organic-inorganic hybrid coating was formed on the glass surface by a simple spraying method to produce a hydrophobic surface with high transparency and durability. Perfluorinated polyether (PFPE) chains with lower surface energy were introduced into the silica sol prepared above. The composite coatings had both the low surface energy of fluorine-containing substances and the rough structure. The surface topography, static water contact angle, self-cleaning performance, anti-fouling performance, wear resistance, adhesion performance, acid and alkali resistances of the coating were tested. The results showed that the maximum water contact angle of the prepared transparent hydrophobic glass can reach 140°. The coating had good adhesion performance, wear resistance, self-cleaning and acid resistant, but poor alkaline resistance. Graphical Abstract Highlights Wear-resistant self-cleaning silicon sol coating was developed. Perfluorinated polyether (PFPE) chains improved the hydrophobicity of the surfaces. The effect of KH550 and KH560 with different volume ratios on the coating properties was investigated. Hydrophobic coating was developed on glass substrates by spray-coating.
ISSN:0928-0707
1573-4846
DOI:10.1007/s10971-024-06429-2