4.8 Article

Three Dimensional PtRh Alloy Porous Nanostructures: Tuning the Atomic Composition and Controlling the Morphology for the Application of Direct Methanol Fuel Cells

Journal

ADVANCED FUNCTIONAL MATERIALS
Volume 22, Issue 17, Pages 3570-3575

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201200678

Keywords

PtRh; alloys; 3D porous nanostructures; methanol oxidation; fuel cells

Funding

  1. DOD Air Force Office of Research [MURI-2011-Nanofabraication]
  2. NSFC [61071040]
  3. China Scholarship Council
  4. Royal Thai Government
  5. Taiwan National Central University
  6. Delta Environmental and Education Foundation
  7. Shanghai Municipal Education Committee [J50102]

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A strategy for the synthesis of PtRh alloy 3D porous nanostructures by controlled aggregation of nanoparticles in oleylamine is presented. The atomic ratio between the two components (Pt and Rh) is tuned by varying the concentration of precursor salts accommodating the oxidation of methanol. The morphology of PtRh alloy nanostructure is controlled by elevating the temperature of the reaction system to 240 degrees C. The prepared 3D porous nanostructures provide a high degree of electrochemical activity and good durability toward the methanol oxidation reaction compared to those of the commercial Pt/C (E-TEK) and PtRh nanoparticles. Therefore, the 3D alloy porous nanostructures provide a good opportunity to explore their catalytic properties for methanol oxidation.

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