A Review of Pt-Based Anode Catalysts Preparation for Direct Ethanol Fuel Cell

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Abstract:

Due to the intensifying energy crisis, the fuel cell research gradually becomes a hot spot, because it is non-toxic, cleaning, inexpensive and easy to obtain. However, there are still many problems in DEFC research, such as cathode, anode catalyst, battery electrode preparation and others. This paper reviews the preparation methods of DEFC anode catalyst, including impregnation reduction method, microemulsion method, and the other methods.

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Advanced Materials Research (Volumes 860-863)

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797-800

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December 2013

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] S.M. Yuan, M. Zhu, J. New Chemical Materials 36(2011) 3615-3618.

Google Scholar

[2] J. Wang, S. Wasmus, R.F. Savinell, J. Electrochem. Soc. 142 (1995)4218-4223.

Google Scholar

[3] B. LUO, D.B. Zhou, J. Materials Review 21(2007) 288-291.

Google Scholar

[4] C. Lamy, E.M. Belgsir, J.M. Leger, J. Appl. Electrochem 46 (2001)2757-2760.

Google Scholar

[5] G. Li, P.G. Pickup, J. Power Sources 161 (2006)256-263.

Google Scholar

[6] J. Goel, S. Basu, J. Energy Procedia 28(2012)66-77.

Google Scholar

[7] J. Tayal, B. Rawat, S. Basu, J. Hydrogen Energy 36(2011)14884-14897.

Google Scholar

[8] L. Cao, G.Q. Sun, H.Q. Li, Q. Xin, Electrochem Commun 9(2007)2541-2546.

Google Scholar

[9] N.R. de Tacconi, R.O. Lezna, B. Beden, J. Electroanal Chem 379(1994) 329-337.

Google Scholar

[11] ML. Calegaro, HB. Sufferdini, SA. Machado, LA. Avaca, ST. Tanimoto, J. Brazil Chem Soc 17(2006)257-264.

Google Scholar

[12] T. Ioroi, K. Yasuda, Y. Yamamoto, J. Electrochem Soc 152(2005)1917-(1924).

Google Scholar

[13] N.R. Li, J. Chemical Research 20(2009)93-95.

Google Scholar

[14] R. Charles, R.Z. Jiang, W. Sarney, D. Chu, J. Electrochimica Acta 55(2010)6872-6878.

Google Scholar

[15] R.R. Jiang, R. Charles, D. Chu. S, J. Electrochimica Acta 56(2011)2532-2540.

Google Scholar

[17] L.R. Li, M.H. Huang, J.J. Liu, Y.L. Guo, J. Power Sources 196(2011)1090-1096.

Google Scholar

[17] E. Ribadeneira, A. Bibian, J. Power Sources 180(2008)238-242.

Google Scholar

[18] E. Lee, A. Murthy, A. Manthiram, J. Electrochimica Acta 56(2011)1611-1618.

Google Scholar

[19] F. Wu, Y.H. Liu, C. Wu, J. Mater Sci Technol 26(2010)705-710.

Google Scholar

[20] R.F.B. De Souza, L.S. Parreira, J.C.M. Silva, M.L. Calegaro, M.J. Giz, G.A. Camara, M.C. Santos, J. Hydrogen Energy 36(2011)11519-11527.

DOI: 10.1016/j.ijhydene.2011.05.016

Google Scholar

[21] H. Yano, M. Kataoka, H. Yamashita, H. Uchida, J. Langmuir. 23(2007)6438-6445.

Google Scholar