Preparation and Characterization of Platinum/Polyaniline Core-Shell Composite

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Abstract. The core-shell composite of platinum/polyaniline (Pt@PAN) had been prepared by chemical synthesis approach. Reduction of the platinum salt in aqueous solution leaded to the formation of platinum nanoparticles, and then polyaniline were synthesized by interfacial polymerization to get Pt@PAN composite. Transmission electron microscopy of Pt@PAN showed Pt particles are uniform with spherical and granular morphology. Pt@PAN was also characterized by EDAX, XPS and FTIR.

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Advanced Materials Research (Volumes 347-353)

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3302-3305

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October 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] V. M. Barragan, C. Ruiz-Bauza and J. P. G. Villaluenga: Journal of Power Sources Vol. 130 (2004), P. 22

Google Scholar

[2] C. Bianchini, and P. K. Shen: Chemical Reviews Vol. 109 (2009), P. 4183

Google Scholar

[3] E.J. Antolini, R. C. Salgado and E. R. Gonzalez: Applied Catalysis B-Environmental Vol. 63 (2006), P. 137

Google Scholar

[4] E. Athanassiou, K.F. Krumeich and R. N. Grass: Physical Review Letters Vol. 101 (2008), P. 166804

Google Scholar

[5] X. M. Feng, H. P. Huang and Q. Q. Ye: Journal of Physical Chemistry C Vol. 111 (2007), P. 8463

Google Scholar

[6] M. Cho, Y. SonC and C. Choi: Molecular Crystals and Liquid Crystals Vol. 491 (2008), P. 339

Google Scholar

[7] N.F. Li,.T. Lei and Y. Liu: Transactions of Nonferrous Metals Society of China Vol. 20 (2010), P. 2314

Google Scholar

[8] M.E. Lahav, E.A. Weiss and Q. B. Xu: Nano Letters Vol. 6(2006), P. 2166

Google Scholar

[9] Y.Y. Dong, Y. Ma and T. Y. Zhai: Nanotechnology Vol. 18 (2007), P. 455603

Google Scholar

[10] K.K. Gyuntak, K. Hohyeong and H. Taejin: Materials Science Forum (2010), P. 2771

Google Scholar

[11] J. G Deng,. X. B. Ding and W. C. Zhang: Polymer Vol. 43 (2002), P. 2179

Google Scholar

[12] L.Z. Guicun, Z.Chuanqin and P. Hongrui: Macromolecular Rapid Communications Vol. (2009), P. 1841

Google Scholar

[13] B.K. Rajesh, K.R. Thampi and J. M. Bonard: Chemical Communications (2003), P. (2022)

Google Scholar

[14] G. P. Jin, J. Li and X. Peng: Journal of Applied Electrochemistry Vol. 39 (2009), P. 1889

Google Scholar

[15] D. W. Hatchett, R. Wijeratne and J. M. Kinyanjui: Journal of Electroanalytical Chemistry Vol. 593 (2006), P. 203

Google Scholar

[16] M. G. Han, S. K. Cho and S. G. Oh: Synthetic Metals Vol. 126 (2002), P. 53

Google Scholar

[17] B. J. Kim, S. G. Oh and M. G. Han: Langmuir Vol. 16 (2000), P. 5841

Google Scholar

[18] J. Kinyanjui, N. Wijeratne and J. Hanks: Electrochimica Acta Vol. 51 (2006), P. 2825

Google Scholar

[19] M.R. Karim, K. T. Lim and C. J. Lee: Journal of Polymer Science Part a-Polymer Chemistry Vol. 45 (2007), P. 5741

Google Scholar

[20] A. Rahy, J. Bae and A. M. Wu: Polymers for Advanced Technologies Vol. 22 (2011), P. 664

Google Scholar

[21] J. Han, Y. Liu and L. Wang: Journal of Polymer Science Part a-Polymer Chemistry Vol. 48 (2010), P. 3903

Google Scholar