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Spin occupancy regulation of the Pt d-orbital for a robust low-Pt catalyst towards oxygen reduction.

Authors :
Xue D
Yuan Y
Yu Y
Xu S
Wei Y
Zhang J
Guo H
Shao M
Zhang JN
Source :
Nature communications [Nat Commun] 2024 Jul 16; Vol. 15 (1), pp. 5990. Date of Electronic Publication: 2024 Jul 16.
Publication Year :
2024

Abstract

Disentangling the limitations of O-O bond activation and OH* site-blocking effects on Pt sites is key to improving the intrinsic activity and stability of low-Pt catalysts for the oxygen reduction reaction (ORR). Herein, we integrate of PtFe alloy nanocrystals on a single-atom Fe-N-C substrate (PtFe@Fe <subscript>SAs</subscript> -N-C) and further construct a ferromagnetic platform to investigate the regulation behavior of the spin occupancy state of the Pt d-orbital in the ORR. PtFe@Fe <subscript>SAs</subscript> -N-C delivers a mass activity of 0.75 A mg <subscript>Pt</subscript> <superscript>-1</superscript> at 0.9 V and a peak power density of 1240 mW cm <superscript>-2</superscript> in the fuel-cell, outperforming the commercial Pt/C catalyst, and a mass activity retention of 97%, with no noticeable current drop at 0.6 V for more than 220 h, is attained. Operando spectroelectrochemistry decodes the orbital interaction mechanism between the active center and reaction intermediates. The Pt dz <superscript>2</superscript> orbital occupation state is regulated to t <subscript>2g</subscript> <superscript>6</superscript> e <subscript>g</subscript> <superscript>3</superscript> by spin-charge injection, suppressing the OH* site-blocking effect and effectively inhibiting H <subscript>2</subscript> O <subscript>2</subscript> production. This work provides valuable insights into designing high-performance and low-Pt catalysts via spintronics-level engineering.<br /> (© 2024. The Author(s).)

Details

Language :
English
ISSN :
2041-1723
Volume :
15
Issue :
1
Database :
MEDLINE
Journal :
Nature communications
Publication Type :
Academic Journal
Accession number :
39013873
Full Text :
https://doi.org/10.1038/s41467-024-50332-x