Articles & Issues
- Language
- korean
- Conflict of Interest
- In relation to this article, we declare that there is no conflict of interest.
- Publication history
-
Received January 11, 2008
Accepted January 25, 2008
- This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright © KIChE. All rights reserved.
All issues
Sol-Gel 하드 코팅 막에서의 Spiropyran의 광 변색 특성
Photochromic Properties of Spiropyran in Hard Coating Films Made by Sol-Gel Method
건양대학교 화공생명학과, 320-711 충남 논산시 내동 26
Department of Chemical and Biochemical Engineering, Konyang University, 26 Nae-dong, Nonsan, Chungnam 320-711, Korea
Korean Chemical Engineering Research, April 2008, 46(2), 310-315(6), NONE Epub 29 May 2008
Download PDF
Abstract
실란커플링제인 glycidoxypropyl trimethoxysilane(GPTMS)과 vinyltriethoxysilane(VTES)을 출발물질로 하여 sol-gel법에 의해 유-무기 혼성 용액을 제조하였다. 이 용액에 spiropyran계 광 변색 염료를 ethylacetate에 용해시킨 용액을 혼합하여 광 변색 코팅 용액을 제조하였다. 그 후 기재인 polycarbonate 시트에 스핀 코팅 시키고 100 ℃에서 2 h 동안 열 경화시켜 광 변색성을 갖는 하드 코팅 막을 제조하였다. 코팅 막은 UV 광을 조사함에 의해 투명색으로부터 푸른색으로 변했다가 다시 투명색으로 변하는 가역적인 색변화를 보여주었다. 이때 코팅 막의 소색속도 및 연필경도는 코팅용액 중의 GPTMS의 mol비가 증가됨에 따라 증가하였다.
Organic-inorganic hybrid solutions were made using glycidoxypropyl trimethoxysilane (GPTMS) and vinyltriethoxysilane (VTES) as starting materials by sol-gel method. Photochromic coating solutions were prepared by mixing the solution of photochromic dye (spiropyran) dissolved in ethylacetate with the organic-inorganic hybrid solutions. Photochromic films were prepared on polycarbonate sheets by spin coating and cured for 2 h at 100 ℃. The resulting films exhibited a reversible color change upon irradiation with UV light from transparent to blue. The color-fading speed and pencil hardness of the coating films increased with increasing the GPTMS content in the coating solutions.
Keywords
References
Crano JC, Guglielmetti RJ, Organic Photochromic and Thermochromic Compounds, Plenum, NY (1999)
Brown GH, Photochromism, Wiley-Interscience, NY (1971)
Drr H, Bouas-Laurent H, Photochromism, Molecules and Systems, Elsevier, Amsterdam (2003)
Mennig M, Fries K, Lindenstruth M, Schmidt H, Thin Solid Films, 351(1-2), 230 (1999)
Schmidt H, Better Ceramics Through Chemistry III, MRS, Reno (1988)
Brinker CJ, Scherer GW, Sol-Gel Science: The Physics and Chemistry of Sol-Gel Processing, Academic Press, Boston (1990)
Hou L, Schmidt H, Hoffmann B, Mennig M, J. Sol-Gel Sci. Technol., 8, 927 (1997)
ASTM D 3359, ASTM International., 927-929 (1997)
Muller P, Pure Appl. Chem., 66(5), 1077 (1994)
Jeong SH, Cho KI, Song KC, Korean Chem. Eng. Res., 46(1), 112 (2008)
Park JK, Song KC, Kang HU, Kim SH, HWAHAK KONGHAK, 40(6), 735 (2002)
Song KC, Park JK, Kang HU, Kim SH, J. Sol-Gel Sci. Technol., 27, 53 (2003)
Brown GH, Photochromism, Wiley-Interscience, NY (1971)
Drr H, Bouas-Laurent H, Photochromism, Molecules and Systems, Elsevier, Amsterdam (2003)
Mennig M, Fries K, Lindenstruth M, Schmidt H, Thin Solid Films, 351(1-2), 230 (1999)
Schmidt H, Better Ceramics Through Chemistry III, MRS, Reno (1988)
Brinker CJ, Scherer GW, Sol-Gel Science: The Physics and Chemistry of Sol-Gel Processing, Academic Press, Boston (1990)
Hou L, Schmidt H, Hoffmann B, Mennig M, J. Sol-Gel Sci. Technol., 8, 927 (1997)
ASTM D 3359, ASTM International., 927-929 (1997)
Muller P, Pure Appl. Chem., 66(5), 1077 (1994)
Jeong SH, Cho KI, Song KC, Korean Chem. Eng. Res., 46(1), 112 (2008)
Park JK, Song KC, Kang HU, Kim SH, HWAHAK KONGHAK, 40(6), 735 (2002)
Song KC, Park JK, Kang HU, Kim SH, J. Sol-Gel Sci. Technol., 27, 53 (2003)