Properties of $TiO_2$ thin film coated on $SnO_2$ thin films by sol-gel method

Sol-gel 법에 의해 $SnO_2$계 박막위에 코팅된 $TiO_2$ 박막의 특성

  • Lim, Tae-Young (Korea Institute of Ceramic Engineering and Technology, Glass & Display Team) ;
  • Cho, Hye-Mi (Korea Institute of Ceramic Engineering and Technology, Glass & Display Team) ;
  • Kim, Jin-Ho (Korea Institute of Ceramic Engineering and Technology, Glass & Display Team) ;
  • Hwang, Jong-Hee (Korea Institute of Ceramic Engineering and Technology, Glass & Display Team) ;
  • Hwang, Hae-Jin (Department of Ceramic Engineering, Inha University)
  • 임태영 (한국세라믹기술원 유리디스플레이팀) ;
  • 조혜미 (한국세라믹기술원 유리디스플레이팀) ;
  • 김진호 (한국세라믹기술원 유리디스플레이팀) ;
  • 황종희 (한국세라믹기술원 유리디스플레이팀) ;
  • 황혜진 (인하대학교 세라믹공학과)
  • Published : 2009.10.31

Abstract

Hydrophilic and transparent $TiO_2$ thin film was fabricated by sol-gel method and the properties of contact angle, surface morphology, and transmittance were measured. In addition, surfactant Tween 80 was used for increasing the hydrophilic property of thin film. When the contents of Tween 80 in $TiO_2$ solution was 0, 10, 30, 50wt%, the contact angles of $TiO_2$ thin film were $41.4^{\circ}$, $18.2^{\circ}$, $16.0^{\circ}$, $13.2^{\circ}$, respectively. Fabricated $TiO_2$ thin film showed the photocatalytic property that decomposed methylene blue and decreased the absorbance of solution after UV irradiation. $TiO_2$ thin films fabricated with the solution of 30 wt% Tween 80 were deposited on glass (bare), antimony tin oxide (ATO), fluorine tin oxide (FTO), indium tin oxide (ITO) coated glass substrates, and the contact angle and transmittance of thin film was measured. The contact angles of thin films deposited on four substrates were $16.2\sim27.1^{\circ}$ and was decreased to the range of $13.2\sim17.6^{\circ}$ after UV irradiation, Especially, the thin films coated on ATO and FTO glass substrate showed high transmittance of 74.6% in visible range, respectively, and low transmittance of 54.2% and 40.4% in infrared range, respectively.

Sol-gel법에 의해 친수성 투명 $TiO_2$ 박막이 제조되었고, 박막의 접촉각, 표면구조, 투과율의 특성이 측정되었다. 더욱이 박막의 친수 특성을 향상시키기 위하여 계면활성제 tween 80이 이용되었다. Tween 80의 첨가량이 0, 10, 30, 50wt%일 때, 제조된 박막의 접촉각은 각각 $41.4^{\circ}$, $18.2^{\circ}$, $16.0^{\circ}$, $13.2^{\circ}$로 확인되었다. 제조된 $TiO_2$ 박막은 자외선 조사 후 Methylene blue용액을 분해시켜 흡광도를 감소시키는 광촉매 특성을 보여주었다. 일반유리(bare glass), Antimony Tin Oxide(ATO)코팅 유리, Fluorine Tin Oxide(FTO)코팅유리, Indium Tin Oxide(ITO)코팅유리 기판 위 에 Tween 80을 30 wt% 함유한 $TiO_2$ 용액을 적층하여 박막의 접촉각과 투과율을 측정하였다. 다양한 기판에 제조된 박막은 $16.2\sim27.1^{\circ}$의 표면 접촉각을 나타냈으며 자외선 조사 후에는 접촉각이 $13.2\sim17.6^{\circ}$로 낮아졌다. 특히 ATO코팅유리와 FTO 코팅유리 기판 위에 코팅된 필름은 가시광선 영역에서 각각 74.6%, 76.8%의 높은 투과율을 나타내었고, 적외선 영역에서는 각각 54.2%, 40.4%의 낮은 투과율을 나타냈다.

Keywords

References

  1. R. Wang, K. Hashimoto, A. Fujishima, M. Chikni, E. Kojima, A. Kitamura and M. Shimohigoshi, "Photogeneration of highly amphiphilic $TiO_{2}$ surfaces", Advanced Material 2 (1998) 135 https://doi.org/10.1002/(SICI)1521-4095(199801)10:2<135::AID-ADMA135>3.0.CO;2-M
  2. O. Carp, C.L. Huisman and A. Reller, "Photoinduced reactivity of titanium dioxide", Solid State Chem. 32 (2004) 33 https://doi.org/10.1016/j.progsolidstchem.2004.08.001
  3. F. Saylkan, M. Asilturk, P. Tater, N. Kiraz, S. Sener, E. Arpac and H. Saykan, "Photocatalytic performance of Sn-doped TiO$_2$", Materials Research Bulletin 43 (2008) 127 https://doi.org/10.1016/j.materresbull.2007.02.012
  4. P. Chrysicopoulou, D. Davazoglou, Chr. Trapalis and G. Kordas, "Optical properties of very thin (< 100 nm) solgel Ti0$_2$", Thin Solid Films 323 (1998) 188 https://doi.org/10.1016/S0040-6090(97)01018-3
  5. M. Takeuchi, T. Itoh and H. Nagasaka, "Dielectric properties of sputtered Ti0$_2$ films", Thin Solids Films 51 (1978) 83 https://doi.org/10.1016/0040-6090(78)90215-8
  6. KK.S. Yeung and Y.w. Lam, "A simple chemical vapour deposition method for depositing thin Ti0$_2$ films", Thin Solids Films 109 (1983) 169 https://doi.org/10.1016/0040-6090(83)90136-0
  7. J.H. Kim and S. Shiratori, "Characterization of TiO$_2$/ Polyelectrolyte thin film fabricated by a layer-by-layer self-assembly method", Jpn. J. Appl. Phys. 44 (2005) 7588 https://doi.org/10.1143/JJAP.44.7588
  8. H. Yanagi, T. Hishiki, T. Tobitani, A. Otomo and S. Mashiko, "Thin film lasing from a dye-doped silica/titania composite", Chem. Phys. Lett. 292 (1998) 332 https://doi.org/10.1016/S0009-2614(98)00675-7
  9. N.K. Adam, "Surfactants and Interfacial Phenomena", (John Wiley &Sons, New York 1978) p.56