Effect of Solvent Content on the Properties of Nanostructure Silica Thin Film by Sol-Gel

  • Shokuhfar A
  • Eghdam E
  • Alzamani M
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Abstract

It is known that silica sol-gel coatings microstructure depend on the components of the sol. In order to develop different microstructures of the silica coatings and comparing their optical properties, a variety of silica sols were prepared which were consist of TEOS, water, catalyst and changing the solvent content, at room temperature. Prepared glass surfaces were coated with silica sol using a dipping technique, with constant withdrawing rate. Prepared coatings were investigated by field-emission scanning electron microscopy (FE-SEM) and UV–Vis. spectroscopy. Transmittance spectra showed that silica coatings featured a distinct increase of substrate transmittance at all wavelengths (400-1100 nm). The result indicated that by increasing the solvent content, the porosity of coating increased and the coating was more densified therefore the silica coating transmittance increased by 3-4% points. FE-SEM showed that the nanostructure silica coating grain size were estimated ~20-40 nm.

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Shokuhfar, A., Eghdam, E., & Alzamani, M. (2012). Effect of Solvent Content on the Properties of Nanostructure Silica Thin Film by Sol-Gel. Nanoscience and Nanotechnology, 2(1), 22–25. https://doi.org/10.5923/j.nn.20120201.05

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