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Anchoring Polydopamine on ZnCo 2 O 4 Nanowire To Facilitate Urea Water Electrolysis.

Authors :
Bhanuse GB
Kumar S
Fu YP
Source :
Chemistry (Weinheim an der Bergstrasse, Germany) [Chemistry] 2023 Sep 26; Vol. 29 (54), pp. e202301872. Date of Electronic Publication: 2023 Aug 18.
Publication Year :
2023

Abstract

To overcome the sluggishness of the oxygen evolution reaction (OER), the urea oxidation reaction was developed. In the case of OER application studies ZnCo <subscript>2</subscript> O <subscript>4</subscript> is an excellent electrocatalyst, towards the UOR has been performed with surface-grown polydopamine (PDA) with surface-grown polydopamine (PDA). ZnCo <subscript>2</subscript> O <subscript>4</subscript> @PDA is produced over the surface of nickel foam by a hydrothermal method followed by self-polymerization of dopamine hydrochloride. Dopamine hydrochloride was varied in solution to study the optimal growth of PDA necessary to enhance the electrochemical activity. Prepared ZnCo <subscript>2</subscript> O <subscript>4</subscript> @PDA was characterized by X-ray diffraction, electronic structural, and morphology/microstructure studies. With successful confirmation, the developed electrode material was applied to UOR and ZnCo <subscript>2</subscript> O <subscript>4</subscript> @PDA-1.5, delivering an excellent low overpotential of 80 mV at 20 mA cm <superscript>-2</superscript> in the electrolyte mixture of 1 M potassium hydroxide+0.33 M urea. To support the excellent UOR activity, other electrochemical properties such as the Tafel slope, electrochemical surface active sites, and electrochemical impedance spectroscopy were also studied. Furthermore, a schematic illustration explaining the UOR mechanism is shown to allow a clear understanding of the obtained electrochemical activity. Finally, urea water electrolysis was carried out in a two-electrode symmetrical cell and compared with water electrolysis. This clearly showed the potential of the developed material for efficient electrochemical hydrogen production.<br /> (© 2023 Wiley-VCH GmbH.)

Details

Language :
English
ISSN :
1521-3765
Volume :
29
Issue :
54
Database :
MEDLINE
Journal :
Chemistry (Weinheim an der Bergstrasse, Germany)
Publication Type :
Academic Journal
Accession number :
37395144
Full Text :
https://doi.org/10.1002/chem.202301872