Preparation of ordered mesoporous alumina-doped titania films with high thermal stability and their application to high-speed passive-matrix electrochromic displays

  • Xiangfen Jiang
  • , Bishnu P Bastakoti
  • , Wu Weng
  • , Tetsuya Higuchi
  • , Hamid Oveisi
  • , Norihiro Suzuki
  • , Wei-Jung Chen
  • , Yu-Tzu Huang
  • , Yusuke Yamauchi

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

Ordered mesoporous alumina-doped titania thin films with anatase crystalline structure were prepared by using triblock copolymer Pluronic P123 as structure-directing agent. Uniform Al doping was realized by using aluminum isopropoxide as a dopant source which can be hydrolyzed together with titanium tetraisopropoxide. Aluminum doping into the titania framework can prevent rapid crystallization to the anatase phase, thereby drastically increasing thermal stability. With increasing Al content, the crystallization temperatures tend to increase gradually. Even when the Al content doped into the framework was increased to 15 mol %, a well-ordered mesoporous structure was obtained, and the mesostructural ordering was still maintained after calcination at 550 °C. During the calcination process, large uniaxial shrinkage occurred along the direction perpendicular to the substrate with retention of the horizontal mesoscale periodicity, whereby vertically oriented nanopillars were formed in the film. The resulting vertical porosity was successfully exploited to fabricate a high-speed and high-quality passive-matrix electrochromic display by using a leuco dye. The vertical nanospace in the films can effectively prevent drifting of the leuco dye. © 2013 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
Original languageEnglish
Pages (from-to)10958-10964
Number of pages7
JournalChemistry - A European Journal
Volume19
Issue number33
DOIs
StatePublished - Aug 12 2013

Keywords

  • display technology
  • doping
  • electrochomism
  • mesoporous materials
  • thin films

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