2018
DOI: 10.1590/1980-5373-mr-2017-0970
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Preparation of Antireflective Silica Coating by the Sol-Gel Method for Heliothermic Power Plants

Abstract: This work deals with the deposition of a thin layer of porous silica antireflective coating onto glass substrates. The films were deposited with different withdrawal speeds and heat-treated at 425°C for 30 minutes. The effects of heat treatment and film deposition rate on the films reflectance were evaluated. The diffuse reflectance was measured using ultraviolet-visible (UV-Vis) spectroscopy. Scanning electron microscopy (SEM) was used for microstructural evaluation of the films. The water contact angle upon … Show more

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Cited by 2 publications
(4 citation statements)
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“…This coating has hydrophilic property because the forces of interaction between water and the substrate are nearly equal with the cohesive forces of bulk water, and water does not cleanly drain from the substrate. The contact angle decrease due to the not stable siloxane groups (Si-O-Si) or to the presence of free silanols groups (Si-OH) that make the film surface polar and reactive, allowing interaction with water molecules physically adsorbed or bounded by hydrogen bonds [36].…”
Section: Contact Angle Measurementsmentioning
confidence: 99%
“…This coating has hydrophilic property because the forces of interaction between water and the substrate are nearly equal with the cohesive forces of bulk water, and water does not cleanly drain from the substrate. The contact angle decrease due to the not stable siloxane groups (Si-O-Si) or to the presence of free silanols groups (Si-OH) that make the film surface polar and reactive, allowing interaction with water molecules physically adsorbed or bounded by hydrogen bonds [36].…”
Section: Contact Angle Measurementsmentioning
confidence: 99%
“…The sol-gel route can be used for production of the separation layer, since it has been proven as an efficient method for production of high-quality silica membranes 22,23 . It allows precise control of the pore structure (shape and pore size distribution) 24,25,26 , a desired characteristic for membrane production. In addition, it is a suitable route for thin film deposition, due to the capability to coat materials of various shapes and areas, as well as demanding low temperatures and simple equipment 22,24,27 .…”
Section: Separation Methodsmentioning
confidence: 99%
“…It allows precise control of the pore structure (shape and pore size distribution) 24,25,26 , a desired characteristic for membrane production. In addition, it is a suitable route for thin film deposition, due to the capability to coat materials of various shapes and areas, as well as demanding low temperatures and simple equipment 22,24,27 . For production of microporous Figure 1.…”
Section: Separation Methodsmentioning
confidence: 99%
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