4.3 Article

Facile syntheses and electrocatalytic properties of porous Pd and its alloy nanospheres

Journal

JOURNAL OF MATERIALS CHEMISTRY
Volume 21, Issue 26, Pages 9620-9625

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c0jm04407e

Keywords

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Funding

  1. National Natural Science Foundation of China [20725310, 21021061, 21073145]
  2. Key Scientific Project of Fujian Province of China [2009HZ0002-1]
  3. National Basic Research Program of China [2007CB815303, 2009CB939804]
  4. NCET in Fujian Province University

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Pd-based catalysts are of great interest both for fundamental research and applications. It still remains a challenge to develop reliable and versatile approaches to prepare Pd-based nanostructures with higher performance and better stability. In this article, a facile solution route has been developed to prepare Pd nanospheres, as well as Pd-Pt, Pd-Ag and Pd-Pt-Ag alloy nanospheres. SEM and TEM investigations revealed that the as-prepared nanospheres were three-dimensionally interconnected porous networks with primary nanoparticles as building blocks. The chemical composition of these nanospheres can be easily adjusted by controlling the molar ratio of precursors. Electrochemical measurements indicated that the electrocatalytic activity of these nanospheres towards formic acid oxidation depended on the composition of the nanospheres. By judiciously adjusting the composition of the Pd based alloy nanospheres, the performance of the Pd based catalysts, i.e., the onset potential of the formic acid oxidation, the corresponding peak current density and the ability to tolerate CO, can be optimized.

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