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Co3O4/activated carbon nanocomposites as electrocatalysts for the oxygen evolution reaction.

Authors :
de Lima, Andrei F. V.
Lourenço, Annaíres de A.
Silva, Vinícius D.
Menezes de Oliveira, André L.
Rostas, Arpad M.
Barbu-Tudoran, Lucian
Leostean, Cristian
Pana, Ovidiu
da Silva, Rodolfo B.
Macedo, Daniel A.
da Silva, Fausthon F.
Source :
Dalton Transactions: An International Journal of Inorganic Chemistry; 5/28/2024, Vol. 53 Issue 20, p8563-8575, 13p
Publication Year :
2024

Abstract

The Oxygen Evolution Reaction (OER) is crucial in various processes such as hydrogen production via water splitting. Several electrocatalysts, including metal oxides, have been evaluated to enhance the reaction efficiency. Zeolitic Imidazolate Framework-67 (ZIF-67) has been employed as a precursor to produce Co<subscript>3</subscript>O<subscript>4</subscript>, showing high OER activity. Additionally, the formation of composites with carbon-based materials improves the activity of these materials. Thus, this work focuses on synthesizing ZIF-67 and commercial activated carbon (AC) composites, which were used as precursors to obtain Co<subscript>3</subscript>O<subscript>4</subscript>/C electrocatalysts by calculating ZIF-67/CX (X = 10, 30, and 50, the mass percentage of AC). The obtained materials were thoroughly characterized by employing X-ray powder diffraction (XRD), confirming the cobalt oxide structure with a sphere-like morphology as observed in the TEM images. The presence of oxygen vacancies was confirmed by infrared spectroscopy and EPR measurements. The electrocatalytic performance in the OER was investigated by linear sweep voltammetry (LSV), which revealed an overpotential of 325 mV at 10 mA cm<superscript>−2</superscript> and a Tafel slope value of 65.32 mV dec<superscript>−1</superscript> for Co<subscript>3</subscript>O<subscript>4</subscript>/C10, superior in activity to several previously reported studies in the literature and electrochemical stability of up to 8 hours. The reduced value of charge transfer resistance, high double-layer capacitance, and the presence of Co<superscript>3+</superscript> ions justify the superior performance of the Co<subscript>3</subscript>O<subscript>4</subscript>/C10 electrocatalyst. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14779226
Volume :
53
Issue :
20
Database :
Complementary Index
Journal :
Dalton Transactions: An International Journal of Inorganic Chemistry
Publication Type :
Academic Journal
Accession number :
177354219
Full Text :
https://doi.org/10.1039/d3dt03720g