Mesoporous sol–gel WO3 thin films via poly(styrene-co-allyl-alcohol) copolymer templates

In this study a copolymer poly(styrene-co-allyl-alcohol), [-CH2CH(C6H5)-]x[-CH2CH-(CH2OH)-]y has been employed as a novel template in a sol-gel synthesis process to direct the formation of mesoporous tungsten oxide. The copolymer, due to its rigid hydrophobic block of polystyrene, is a more effectiv...

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Veröffentlicht in:Solid state ionics 2003-12, Vol.165 (1-4), p.65-72
Hauptverfasser: Zayim, E O, Liu, P, Lee, S-H, Tracy, C E, Turner, J A, Pitts, J R, Deb, S K
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Sprache:eng
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Zusammenfassung:In this study a copolymer poly(styrene-co-allyl-alcohol), [-CH2CH(C6H5)-]x[-CH2CH-(CH2OH)-]y has been employed as a novel template in a sol-gel synthesis process to direct the formation of mesoporous tungsten oxide. The copolymer, due to its rigid hydrophobic block of polystyrene, is a more effective surfactant in an alcohol solution than polypropylene oxidepolyethylene oxide based compounds. The films have been prepared by a spin-coating technique from an ethanol solution of tungsten hexachloride. A room temperature, ultraviolet illumination method has been found to be very suitable for removing the polymer template, leading to the formation of a high-quality mesoporous structure. The electrochromic and optical properties of the mesoporous films are described and compared to standard sol-gel tungsten oxide films. Mesoporous materials exhibit superior high-rate ion-insertion performance when used as electrochromic layers.
ISSN:0167-2738
DOI:10.1016/j.ssi.2003.08.014