Effects of applied voltages on nano-structures of anodized metal oixdes and their electrochromic applications

인가 전압에 따른 양극산화된 금속 산화물의 나노 구조 변화와 전기변색 응용

  • 김태호 (한국기술교육대학교 창의융합공학협동전공) ;
  • 이재욱 (한국기술교육대학교 에너지신소재화학 공학부) ;
  • 김병성 (한국기술교육대학교 에너지신소재화학 공학부) ;
  • 전형진 (한국기술교육대학교 에너지신소재화학 공학부) ;
  • 나윤채 (한국기술교육대학교 창의융합공학협동전공)
  • Published : 2016.11.17

Abstract

Electrochemical anodization has been interested due to its useful way for the nano-scale architecture of metal oxides obtained from a metal substrate. By using this method, it is easy to control the morphology of the oxide materials by controlling electrochemical conditions. Among oxide materials obtained from the transition metals such as Ti, V, W, etc., in this paper, the morphological study of anodized $TiO_2$ was employed at various voltage conditions in fluoric based electrolyte, and the effects of applied voltage (sweep rate and retention time) on the tube morphologies were investigated. Furthermore, by using anodization of tungsten substrate (W), we fabricated the porous structure of $WO_3$ and provided merits of tailored structure for the hybridization of inorganic and organic materials as electrochromic (EC) applications. The hybrid porous $WO_3$ shows multi-chromic properties during the EC reactions at specific voltage conditions. From these results, the anodization process with tailoring nano-structure is one of the promising methods for EC applications.

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