Fabrication of $TiO_2$-silver transparent thin films low-e coated on glass substrate by ink-jet printing

잉크젯 프린팅을 이용한 low-e $TiO_2$-silver 투명박막형성

  • Yoon, Cho-Rong (Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University) ;
  • Oh, Hyo-Jin (Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University) ;
  • Lee, Nam-Hee (Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University) ;
  • Guo, Yupeng (Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University) ;
  • Kim, Byung-Whan (Department of Electronic Engineering, Sejong University) ;
  • Kim, Sun-Jae (Faculty of Nanotechnology and Advanced Materials Engineering, Sejong University)
  • 윤초롱 (세종대학교 나노신소재공학과) ;
  • 오효진 (세종대학교 나노신소재공학과) ;
  • 이남희 (세종대학교 나노신소재공학과) ;
  • ;
  • 김병환 (세종대학교 전자공학과) ;
  • 김선재 (세종대학교 나노신소재공학과)
  • Published : 2007.11.01

Abstract

Low-emissivity (low-e) coatings with visible transparency have attracted increased interest m reducing heat radiation loss through window panes from ecological and sustainable aspects. $TiO_2$-silver transparent thin films for low-e have good properties for UV and IR blocking as well as photocatalyst compared to that with commercial UV blocking films such as fluorine doped oxide (FTO), antimony doped tin oxide (ATO), etc. In this study, transparent $TiO_2$-silver thin films were prepared by successive ink-jet printing of commercial nano silver and $TiO_2$ sol. The $TiO_2$ sol, as ink for ink-jet printing, were synthesized by hydrothermal process in the autoclave externally pressurized with $N_2$ gas of 200 bar at $120^{\circ}C$ for 10 hrs. The synthesized $TiO_2$ sols were all formed with brookite phase and their particle size was several to 30 nm. At first nano sized silver sol was coated on glass substrate, after that $TiO_2$ sol was coated by ink-jet printing. With increasing coating thickness of $TiO_2$-silver multilayer by repeated ink-jet coating, the absorbance of UV region (under 400nm) and IR region (over 700nm) also increase reasonably, compared to that with commercial UV blocking films.

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