Hydrophobic coatings based on SiO2
Katarzyna Porębska
Institute of Materials Engineering; Faculty of Mechanical Engineering; Technical University of Łódź (Poland)
Abstract
The method of conversion, properties and usage of hydrophobic coatings on the bases of silicon dioxide is presented in the article. These layers are formed by use the silanes which are not react with water. What is more, these layers could provide not only great resistance to the effect of water molecules, but also better resistance to the effect of abrasive action and hardness as well as keeping the top stair of the transparency. Uncomplicated methods such as zol-zel are used to settling these layers. There are methods of putting on the various surfaces, without necessity of usage specific and sophisticated technological solutions. As a transparent and simple to keep in the cleanness surfaces these layers found application in various field such as sport, motorization, building industry, optical system whether in our houses.
Keywords:
Hydrophobic coatings, silica, sol-gel, contact angle, hydrophobicity, wettabilityReferences
Łączka M., Terczyńska A., Cholewa- Kowalska K. Powłoki żelowe na szkle cz 2. Świat Szkła 11 (2008) 40-43.
Google Scholar
Nocuń M. Powłoki funkcyjne na szkle – rodzaje, właściwości, perspektywy rozwoju. Świat Szkła 1 (2010) 44-49.
Google Scholar
Subasri R., Malathi R., Jyothirmayi A., Hebalkar N.Y. Synthesis and characterization of CuO-hybrid silica nanocomposite coatings on SS 304. Ceramics International 38 (2012) 5731–5740.
Google Scholar
Jaiswal S., McHale P., Duffy B.,Preparation and rapid analysis of antibacterial silver, copper and zinc doped sol–gel surfaces. Colloids and Surfaces B: Biointerfaces 94 (2012) 170– 176.
DOI: https://doi.org/10.1016/j.colsurfb.2012.01.035
Google Scholar
Brinker C.J., Scherer G.W. Sol-Gel Science. The physics and chemistry of sol-gel processing. San Diego 1990.
Google Scholar
Łączka M., Terczyńska A., Cholewa- Kowalska K. Powłoki żelowe na szkle cz 1. Świat Szkła 9 (2008) 52-55.
Google Scholar
http://large.stanford.edu/courses/2007/ph210/hellstrom1/ [28.07.2013]
Google Scholar
http://encyklopedia.naukowy.pl/Hydrofobowo%C5%9B%C4%87 [12.07.2013]
Google Scholar
Bąk A. Techniki wytwarzania powłok na szkle: metoda zol- żel. Świat Szkła 17 (2012) 40-41.
Google Scholar
http://en.wikipedia.org/wiki/Anti-graffiti_coating [25.06.2013]
Google Scholar
http://encyklopedia.naukowy.pl/Poli(dimetylosiloksan) [12.07.2013]
Google Scholar
Wua Y.L., Chen Z., Zeng X.T. Nanoscale morphology for high hydrophobicity of a hard sol–gel thin film. Applied Surface Science 254 (2008) 6952–6958.
Google Scholar
Wu L. Y. L., Tan G. H., Qian M., Li T. H. Formulation of transparent hydrophobic sol-gel hard coatings. SIMTech technical reports Volume 6(2) (2005).
Google Scholar
Scheeder J., Visscher N., Nabuurs T., Overbeek A. Water-based fluorinated polymers with excellent antigraffiti properties. Journal of Coatings Technology and Research Oct (2005) 617-625.
DOI: https://doi.org/10.1007/BF02774591
Google Scholar
Wu L.Y.L., Tan G.H., Zeng X.T., Li T.H., Chen Z. Synthesis and characterization of transparent hydrophobic sol-gel hard coatings. Journal of Sol-Gel Science and Technology 38(2006) 85–89.
DOI: https://doi.org/10.1007/s10971-006-5917-1
Google Scholar
Authors
Katarzyna PorębskaInstitute of Materials Engineering; Faculty of Mechanical Engineering; Technical University of Łódź Poland
Statistics
Abstract views: 252PDF downloads: 189
License
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Budownictwo i Architektura supports the open science program. The journal enables Open Access to their publications. Everyone can view, download and forward articles, provided that the terms of the license are respected.
Publishing of articles is possible after submitting a signed statement on the transfer of a license to the Journal.