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Title: Tuning the electrocatalytic activity of Pt by structurally ordered PdFe/C for the hydrogen oxidation reaction in alkaline media
Authors: Xiao, W
Lei, W
Wang, J 
Gao, G
Zhao, T
Cordeiro, MAL
Lin, R
Gong, M
Guo, X 
Stavitski, E
Xin, HL
Zhu, Y 
Wang, D
Issue Date: 28-Jun-2018
Source: Journal of materials chemistry A, 28 June 2018, v. 6, no. 24, p. 11346-11352
Abstract: Tuning the hydrogen adsorption energy (EH) by controlling the surface electronic structure of Pt is essential for enhancing the hydrogen oxidation reaction (HOR) performance in alkaline media. This could be achieved by forming a Pt skin on PdFe/C nanoparticles with structurally ordered intermetallic (O-PdFe@Pt/C) or disordered alloy (D-PdFe@Pt/C). The HOR activity on O-PdFe@Pt/C exhibits an exchange current density of 1.49 A mgPt -1, which is 3.87 and 7.56 times higher than that on D-PdFe@Pt/C (0.385 A mgPt -1) and Pt/C (0.197 A mgPt -1), respectively. The excellent electrocatalytic HOR performance on O-PdFe@Pt/C can be ascribed to the attenuation of EH on the Pt shell induced by the structurally ordered PdFe core, where the EH on O-PdFe@Pt surface is 0.18 eV smaller than that on Pt according to DFT calculations.
Publisher: Royal Society of Chemistry
Journal: Journal of materials chemistry A 
ISSN: 2050-7488
EISSN: 2050-7496
DOI: 10.1039/c8ta03250e
Rights: This journal is © The Royal Society of Chemistry 2018
The following publication Xiao, W., Lei, W., Wang, J., Gao, G., Zhao, T., Cordeiro, M. A. L., . . . Wang, D. (2018). Tuning the electrocatalytic activity of pt by structurally ordered PdFe/C for the hydrogen oxidation reaction in alkaline media. Journal of Materials Chemistry A, 6(24), 11346-11352 is available at https://doi.org/10.1039/c8ta03250e.
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