Plating Precious Metals on Nonprecious Metal Nanoparticles for Sustainable Electrocatalysts

Lei Wang(Johns Hopkins University), Zhenhua Zeng(Purdue University West Lafayette), Cheng Ma(Oak Ridge National Laboratory), Yifan Liu(Johns Hopkins University), Michael Giroux(Johns Hopkins University), Miaofang Chi(Oak Ridge National Laboratory), Jian Jin(Suzhou Institute of Nano-tech and Nano-bionics), Jeffrey Greeley(Purdue University West Lafayette), Chao Wang(Johns Hopkins University)
Nano Letters
May 5, 2017
Cited by 77Open Access
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Abstract

Precious metals have broad applications in modern industry and renewable energy technologies. The high cost and limited availability of these materials, however, have caused a grand challenge for sustainability. Here, we report on the plating of a precious metal on nonprecious metal nanoparticles for the development of sustainable electrocatalysts. Cobalt/platinum core/shell (denoted as Co@Pt) nanoparticles were synthesized via seed-mediated growth. The Co seeds were first synthesized by thermal decomposition of cobalt carbonyl, and the Pt shell was overgrown in situ by adding platinum acetylacetonate (Pt(acac)2). The galvanic replacement reaction between Co and the Pt precursor was successfully suppressed by taking advantage of CO (generated from the decomposition of cobalt carbonyl) as the stabilizing ligand and/or reducing agent. The obtained Co@Pt nanoparticles were further found to exhibit enhanced catalytic activity for the oxygen reduction reaction (ORR).


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