Korean Journal of Materials Research, Vol.23, No.12, 672-679, December, 2013
Fe4[Fe(CN)6]3가 코팅된 Mica 또는 TiO2/Mica 적외선 반사용 청색안료 제조 및 이 도료의 차열 특성 평가
Preparation of Fe4[Fe(CN)6]3 Coated on Mica or TiO2/Mica for Infrared Reflective Blue Pigments and Isolation-heat Properties of These Paints
E-mail:
Fe4[Fe(CN)6]3 coated on a mica or TiO2/mica surface as infrared reflective blue pigment was prepared by a hydrothermal method. Fe4[Fe(CN)6]3 , used as coloring agent, was uniformly coated on mica or TiO2/mica under the optimized condition of a 1.2 : 1 weight ratio between iron(III) chloride hexahydrate and potassium ferrocyanidetrihydrate at the initial pH level of 4.5 at 70 oC. The infrared (IR)-reflective pigments were characterized by SEM, Zeta-potenial, FT-IR, and UV-VIS NIR spectrophotometry. Especially the CIE color coordinate and total solar reflectance(TSR) properties of the pigments were investigated in relation to variation of the coating and coated substrate thicknesses. Isolation-heat paint was prepared with 20 wt% blue pigments fully dispersed in acryl-urethane resin and several additives to coat the film uniformly. The films were also measured with CIE color coordinate, TSR, and the surface temperature was recorded by an isolation-heat measuring system. The pigments and films of Fe4[Fe(CN)6]3 coated on mica and TiO2/mica showed high TSR values compared with the TSR value of Fe4[Fe(CN)6]3 itself. According to the increase of TSR value, the property of isolation-heat is effective. To realize the
optimal blue color, we applied the the pigment to TiO2 coated mica(TM(b)) which has blueish interference color. The pigment of Fe4[Fe(CN)6]3 coated on TM(b) shows a strong blue color compared with that of Fe4[Fe(CN)6]3 coated on TiO2/ Mmca(TM(w)), which has a whitish interference color.
Keywords:infrared reflective pigment;total solar reflection(tsr);color pigment;isolation-heat paint;refractive index
- Bretz SE, Akbari H, Energy Build., 25(2), 159 (1997)
- Uemoto KL, Sato NMN, John VM, Energy Build., 42(1), 17 (2010)
- Park WK, Kim TH, Ceramists., 14(3), 23 (2011)
- Bendiganavale A, Malshe V, Recent Pat. Chem. Eng., 1(1), 27 (2008)
- Kim DW, Bahng KH, Sun LD, Kim HD, Kor. J. ASHRAE., (in Korean), 25(1), 86 (2009)
- Kil HS, Kim YH, Rhee SW, Green Home Energ. Tech., (in Korean), 2(1), 19 (2012)
- Fujiwara M, Shiokawa K, Sakakura I, Nakahara Y, Langmuir, 26(9), 6561 (2010)
- Lee JT, Jeong JS, Yun TK, Bae JY, Appl. Chem., 14(2), 9 (2010)
- Do YW, Lee SW, Lim DM, Ha JW, Kor. Acad-Ind. Cooperat. Soc. Semiannual., 28(2), 344 (2012)
- Kwon MJ, Do YW, Ha JW, Kor J. Acad-Ind. Cooperat. Soc., (in Korean), 13(8), 3800 (2012)
- Kwon MJ, Ha JW, Kor. Acad-Ind. Cooperat. Soc. Semiannual., (in Korean), 28(2), 340 (2012)
- Liang JZ, Li FH, Polymer Test., 26(8), 1025 (2007)
- Liang JZ, Li FH, Polymer Test., 25(4), 527 (2006)
- Levinsona R, Akbaria H, Reilly JC, Build Environ., 42(7), 2591 (2007)
- Zhao MC, Han AJ, Ye MQ, Wu TT, Sol. Energy, 97, 350 (2013)
- Thongkanluang T, Chirakanphaisarn N, Limsuwan P, Procedia Eng., 32(1), 895 (2012)
- Thongkanluang T, Limsuwan P, Rakkwamsuk, Int. J. Appl. Ceram. Technol., 8(6), 1451 (2011)
- Bemdiganavale AK, Malshe VC, Recent Pat. Chem. Eng., 1(1), 67 (2008)
- Kwak HA, Choi EY, Chang BS, Kor. J. Microsc., (in Korean), 39(1), 41 (2009)
- Lee DK, Lee JH, Park SY, J. Kor. Oil. Chem. Soc., (in Korean), 25(4), 511 (2008)
- Lee KS, Lee DK, J. Kor. Oil. Chem. Soc., (in Korean), 28(3), 335 (2011)
- Ren M, Yin HB, Ge CQ, Huo JC, Li X, Wang AL, Yu LB, Jiang TS, Wu ZN, Appl. Surf. Sci., (in Korean), 258(7), 2667 (2012)
- Stemgl V, Subrt J, Bakardjieva S, Kalendova A, Kalenda P, Dyes Pigments., 58(3), 2003 (239)
- Junru T, Xiansong F, Wenxiang H, Xiuzeng C, Li W, Dyes Pigments., 56(2), 93 (2003)
- Du HY, Liu CX, Sun JY, Chen QR, Powder Technol., 185(3), 291 (2008)
- P. H. Berdahl, US pat. 5811180 (1998)
- Rohillaa S, Lal B, Sunder S, Aghamkar P, Kumar S, Aggarwal A, Acta Phys. Pol., 118(4), 696 (2010)