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  4. Optical and morphological characterisation of low refractive index materials for coatings on solar collector glazing
 
research article

Optical and morphological characterisation of low refractive index materials for coatings on solar collector glazing

Hody-Le Caër, Virginie
•
De Chambrier, Estelle  
•
Mertin, Stefan  
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2013
Renewable Energy

Nanostructured coatings based on the elements Si, O, Mg, and F have been deposited as thin films by solegel dip-coating in a particle-free atmosphere. The refractive index of the prepared SiO2 and quaternary MgeFeSieO thin films has been determined from spectrophotometric and ellipsometric data. The morphology of those thin films has been observed by TEM. Nanoporous SiO2 coatings with a pore size smaller than 3 nm (TEM) and a pore volume fraction of 30% (as inferred from ellipsometric measurements) have been achieved. They are characterised by significantly lower refractive index values (approx. 1.32 at 550 nm) than compact SiO2 (approx. 1.46). Quaternary MgeFeSieO thin films are characterised by a surprisingly low refractive index (approx. 1.26 at 550 nm), even lower than that of dense MgF2 coatings (approx. 1.38). Preliminary results of transmission electron microscopy suggest that these films are of nanocomposite nature. In both cases, highly transparent samples have been produced in a single dip-coating step followed by simple thermal annealing in air. Broad spectral transmittance maxima are observed exceeding values of 98.5% (nanoporous SiO2) and 99.5% (quaternary MgeFeSieO films). The quaternary films might exhibit a higher ageing stability than porous SiO2 films with respect to pore-filling and could therefore be a promising alternative for single-layered anti-reflection coatings as well as for multi-layered coloured coatings on solar collector glazing.

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Type
research article
DOI
10.1016/j.renene.2012.10.052
Web of Science ID

WOS:000315539000004

Author(s)
Hody-Le Caër, Virginie
De Chambrier, Estelle  
Mertin, Stefan  
Joly, Martin  
Schaer, Marie  
Scartezzini, Jean-Louis  
Schueler, Andreas  
Date Issued

2013

Publisher

Pergamon-Elsevier Science Ltd

Published in
Renewable Energy
Issue

53

Start page

27

End page

34

Subjects

Anti-reflectionhttps

•

Nanoporous

•

Nanocomposite

•

Sol-gel

•

Ellipsometry

•

Microscopy

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LESO-PB  
Available on Infoscience
January 21, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/87994
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