Platinum–Iron–Nickel Trimetallic Catalyst with Superlattice Structure for Enhanced Oxygen Reduction Activity and Durability
02 engineering and technology
540
0210 nano-technology
01 natural sciences
510
0104 chemical sciences
DOI:
10.1021/acs.iecr.6b02298
Publication Date:
2016-10-14T09:37:27Z
AUTHORS (7)
ABSTRACT
We develop platinum–iron–nickel (PtFeNi) trimetallic alloy catalysts having a chemically ordered L10-type superlattice structure. The PtFeNi catalyst annealed at 800 °C possesses a superlattice structure and exhibits oxygen reduction reaction (ORR) activity that is much higher than that of the disordered PtFeNi catalysts and a commercial Pt catalyst supported on carbon black. Moreover, the ORR specific activities in the PtFeNi trimetallic systems are enhanced more than those in the PtFe and PtNi bimetallic systems. Analyses of in situ X-ray absorption spectroscopy reveals Pt–Pt bond distances in the PtFeNi annealed at 800 °C (2.70–2.72 A) are shorter than those in a commercial Pt (2.77 A), leading to a suitable balance of oxygen species chemisorption energies on the Pt atoms. In addition, high durability of the PtFeNi catalyst with a superlattice structure is demonstrated. Therefore, tuning the atomic structures of Pt-alloy catalysts by the formation of a superlattice structure and trimetallic system effe...
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