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The Surface Adsorption Of Nano-Pore Template

Authors: M. J. Kao; S.F. Chang; C.C. Chen; C.G. Kuo;

The Surface Adsorption Of Nano-Pore Template

Abstract

{"references": ["M.C. Roco,.,Journal of Nanoparticle Research 7, 707 (2005).", "C.C. Chen, W.D. Jehng, L.L. Li, W.G. Diau, J. Electrochemical Soci.,\n156, C304 (2009)", "C.C. Chen, H.W. Chung, C.H. Chen, H.P. Lu, C.M. Lan, S.F. Chen, L.\nLuo, C.S. Hung, E.W.G. Diau, J. Phys. Chem. C 112, 19151 (2008).", "Pribat, Didier; Cojocaru, Costel Sorin; Xavier, Stephane; Lim, Sung\nHoon; Guilley, Arnaud Jullien; Legagneux, Pierre; Minoux, Eric, Digest\nof Technical Papers - SID International Symposium 38, 1409 (2007).", "Novak, J.F. (Applied Nanotech, Inc.); Fink, R.L.; Yaniv, Z., Proceedings\nof the 12th International Display Workshops in Conjunction with Asia\nDisplay 2005, 257 (2005).", "G. Jeon, S.Y. Yang, J. Byun, J.K. Kim, Nano Letters, 11, 1284 (2011).", "R. Keller and F. hunter: J. Electrochem. Soc. 100, (1953) 411.", "H. Lewis and L. Plumb: J. Electrochem., Soc. 105, 496 (1958).", "T. Edwards and R. Keller: Metals Technol., 11 Techn. Publ. 1, 710\n(1944).\n[10] K. T. Sunil and C. C.Hsueh: Chaos 12, 240 (2002).\n[11] H. Masuda and F. Hasegwa: J. Electrochem. Soc. 144, 127 (1997).\n[12] H. Masuda and K. Fukuda: Science 268, 1466 (1995).\n[13] H. Masuda and M. Yotsuya: Appl. Phys. Lett. 78, 826 (2001).\n[14] R. J. Tonucci and B, L. Justus: Science, 258, 783 (1992).\n[15] R. Charles and H. Martin: Chem. Mater., 8, 1739 (1996).\n[16] F. Burmeister and C. Schafle: Adv., Mater., 10, 495 (1998).\n[17] H. Akahori: J. Electron Microscopy Japan 11, 217 (1962).\n[18] R. Charles and S. Spooner: J. Electrochem. Soc. 102, 156 (1955).\n[19] Setoh, S. Miyata, A., Sci. Pap. Inst. Phys. Chem. Res., Tokyo, 189(1932).\n[20] Akahori, J. Electron microscopy, Japan, (1962)."]}

This paper aims to fabricated high quality anodic aluminum oxide (AAO) film by anodization method. AAO pore size, pore density, and film thickness can be controlled in 10~500 nm, 108~1011 pore.cm-2, and 1~100 μm. AAO volume and surface area can be computed based on structural parameters such as thickness, pore size, pore density, and sample size. Base on the thetorical calculation, AAO has 100 μm thickness with 15 nm, 60 nm, and 500 nm pore diameters AAO surface areas are 1225.2 cm2, 3204.4 cm2, and 549.7 cm2, respectively. The large unit surface area which is useful for adsorption application. When AAO adsorbed pH indictor of bromphenol blue presented a sensitive pH detection of solution change. This testing method can further be used for the precise measurement of biotechnology, convenience measurement of industrial engineering.

Keywords

AAO, Pore, Indicator, Surface area, Adsorption

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