Iron Integration in Nickel Hydroxide Matrix vs Surface for Oxygen-Evolution Reaction: Where the Nernst Equation Does Not Work

Authors
Akbari, Mohammad Saleh AliNandy, SubhajitChae, Keun HwaNajafpour, Mohammad Mahdi
Issue Date
2024-04
Publisher
American Chemical Society
Citation
The Journal of Physical Chemistry Letters, v.15, no.13, pp.3591 - 3602
Abstract
This study focuses on the oxygen-evolution reaction (OER) activity comparison between two forms of NiFe (hydr)oxides: compound 1, where Fe ions are applied on the surface of nickel (hydr)oxide, and compound 2, with Fe ions incorporated into the structural matrix of nickel (hydr)oxide. The observed exponential link between Coulombic energy and the total charge of the system points to a direct proportionality between the potential and the concentration of oxidized nickel ions (e.g., V (sic) [oxidized Ni]), diverging from the logarithmic relationship outlined in the Nernst equation or its modifications, which is not evident in this case. Initial visible spectroscopy indicates a notable trend toward oxidation. As, during the oxidation, more Ni is oxidized, a repulsion effect develops, diminishing the likelihood of further oxidation, and a distinct linear correlation emerges between the quantity of oxidized Ni(II) and the applied potentials.
Keywords
WATER OXIDATION; FE-SITES; METAL; OXIDE; NIFE; ELECTROCATALYSTS; OXYHYDROXIDE; ELECTROLYSIS; EXFOLIATION; CATALYST
ISSN
1948-7185
URI
https://pubs.kist.re.kr/handle/201004/149573
DOI
10.1021/acs.jpclett.4c00604
Appears in Collections:
KIST Article > 2024
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