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Pt NANOCLUSTERS ON CARBON NANOMATERIALS FOR HYDROGEN FUEL CELLS

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Hydrogen Materials Science and Chemistry of Carbon Nanomaterials

Abstract

The detailed study of carbon nanomaterials constitution with allowance for of reduction conversions Pt (II, IV) allows to realize directional looking up of methods of preparation of platinum catalysts for redox reactions in hydrogen fuel cells.

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References

  1. Tarasov, B.P., Muradyan, V.E., Shul’ga, Yu.M., Krinichnaya, E.P., Kuyunko, N.S., Efimov, O.N., Obraztsova, E.D., Schur, D.V., Maehlen, J.P., Yartys, V.A. and Lai, H.J. (2003) Synthesis of carbon nanostructures by arc evaporation of graphite rods with Co-Ni and YNi2 catalysts. Carbon, 41, No. 7, 1357–1364.

    Article  CAS  Google Scholar 

  2. Shul’ga, Yu.M., Domashnev, I.A., Tarasov, B.P., Kolesnikova, A.M., Krinichnaya, E.P., Muradyan, V.E. and Shul’ga, N.Yu. (2002) Interlayer distance in multi-layer carbon nanotubes. Alternative energy and ecology (ISJAEE), No. 1, 70–72 (in Russian).

    Google Scholar 

  3. Kushch, S.D., Fursikov, P.V., Kuyunko, N.S., Kulikov, A.V. and Savchenko, V.I. (2001) Fullerene black: relationship between catalytic activity in n-alkanes dehydrocyclization and reactivity in oxidation, bromination and hydrogenolysis. Eurasian Chemico-Technol. Journal, 3, No. 2, 131–139.

    CAS  Google Scholar 

  4. Volodin, A. A., Fursikov, P.V. and Tarasov, B.P. (2003) Interlayer distance in multi-layer carbon nanotubes. Alternative energy and ecology (ISJAEE), No. 6, 34–36 (in Russian).

    Google Scholar 

  5. Yu, R., Chen, L., Liu, Q., Lin, J., Tan, K.-L., Ng, S.C., Chan, H.S.O., Xu, G.-Q. and Hor, T.S.A. (1998) Platinum deposition on carbon nanotubes via chemical modification. Chem. Mater., 10, No. 3, 718–722.

    Article  CAS  Google Scholar 

  6. Xing, Y. (2004) Synthesis and electrochemical characterization of uniformlydispersed high loading Pt nanoparticles on sonochemically-treated carbon nanotubes. J. Phys. Chem. B, 108, No. 50, 19255–19259.

    Article  CAS  Google Scholar 

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KUYUNKO, N., KUSHCH, S., MURADYAN, V., VOLODIN, A., TORBOV, V., TARASOV, B. (2007). Pt NANOCLUSTERS ON CARBON NANOMATERIALS FOR HYDROGEN FUEL CELLS. In: Veziroglu, T.N., et al. Hydrogen Materials Science and Chemistry of Carbon Nanomaterials. NATO Security through Science Series A: Chemistry and Biology. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-5514-0_26

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