4.8 Article

Facile Synthesis of Pd-Pt Alloy Nanocages and Their Enhanced Performance for Preferential Oxidation of CO in Excess Hydrogen

Journal

ACS NANO
Volume 5, Issue 10, Pages 8212-8222

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/nn202896q

Keywords

Pd-Pt alloy nanocages; PROX; galvanic replacement; coreduction; Pd nanocubes

Funding

  1. DOE
  2. University of Delaware [DE-FG02-03 ER15468]
  3. Washington University in St. Louis
  4. Zhejiang University
  5. China Scholarship Council
  6. CNMT under MEST, Korea [2010K000336]
  7. NSF [ECS-0335765]

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This article describes a new method for the facile synthesis of Pd-Pt alloy nanocages with hollow interiors and porous walls by using Pd nanocubes as sacrificial templates. Differing from our previous work (Zhang, H.; Jin, M. S.; Wang, J. G.; Li, W. Y.; Camargo, P. H. C.; Kim, M. J.; Yang, D. R.; Xie, Z. X.; Xia, Y. Synthesis of Pd-Pt Bimetallic Nanocrystals with a Concave Structure through a Bromide-Induced Galvanic Replacement Reaction. J. Am. Chem. Soc. 2011, 133, 6078-6079), we complemented the galvanic replacement (between Pd nanocubes and PtCl(4)(2-)) with a coreduction process (for PdCl(4)(2-) from the galvanic reaction and ptCl(4)(2-) from the feeding) to generate Pd-Pt alloy nanocages In one step. We found that the rate of galvanic replacement (as determined by the concentrations of Br(-) and PtCl(4)(2-) and temperature) and the rates of coreduction (as determined by the type of reductant and temperature) played Important roles in controlling the morphology of resultant Pd-Pt alloy nanocages. The Pd-Pt nanocages exhibited both enhanced activity and selectivity for the preferential oxidation (PROX) of CO in excess hydrogen than those of Pd nanocubes and the commercial Pt/C thanks to the alloy composition and hollow structure. In addition, as the sizes of the Pd-Pt nanocages decreased, they exhibited higher CO conversion rates and lower maximum conversion temperatures due to the increase in specific surface area.

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