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      Low-platinum and platinum-free catalysts for the oxygen reduction reaction at fuel cell cathodes

      , ,
      Energy & Environmental Science
      Royal Society of Chemistry (RSC)

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          One-Dimensional Nanostructures: Synthesis, Characterization, and Applications

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            Pd-Pt bimetallic nanodendrites with high activity for oxygen reduction.

            Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their catalytic properties and increase their activity on a mass basis. We synthesized Pd-Pt bimetallic nanodendrites consisting of a dense array of Pt branches on a Pd core by reducing K2PtCl4 with L-ascorbic acid in the presence of uniform Pd nanocrystal seeds in an aqueous solution. The Pt branches supported on faceted Pd nanocrystals exhibited relatively large surface areas and particularly active facets toward the oxygen reduction reaction (ORR), the rate-determining step in a proton-exchange membrane fuel cell. The Pd-Pt nanodendrites were two and a half times more active on the basis of equivalent Pt mass for the ORR than the state-of-the-art Pt/C catalyst and five times more active than the first-generation supportless Pt-black catalyst.
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              Multicopper Oxidases and Oxygenases.

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                Author and article information

                Journal
                EESNBY
                Energy & Environmental Science
                Energy Environ. Sci.
                Royal Society of Chemistry (RSC)
                1754-5692
                1754-5706
                2011
                2011
                : 4
                : 4
                : 1238
                Article
                10.1039/c0ee00601g
                c16f3820-e609-4761-83c1-109e2a2ea76b
                © 2011
                History

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