Issue 37, 2024

ZnO doped highly porous activated charcoal-polyaniline incorporated NiP coatings as high performance electrocatalyst for hydrogen evolution reaction

Abstract

Hydrogen production via electrocatalytic water splitting has attracted significant research attention in recent years as it is a clean, sustainable, and renewable energy source. Transition metal phosphides, especially nickel phosphides and transition metal oxides, exhibit high catalytic activity for hydrogen evolution. To overcome current limitations such as high overpotential and instability of catalysts, we developed ZnO-doped highly porous activated charcoal polyaniline-incorporated NiP coatings as electrocatalysts for HER using a simple electroless coating method. The developed catalyst (AC/PANI-ZnO-NiP) exhibits low overpotential (97 mV) at 10 mA cm−2, low Tafel slope (81 mV dec−1), and high Cdl (280.9 μF). The exceptional electrochemical performance is due to the presence of a protonated NH group in PANI and increased surface roughness and porosity owing to the presence of ZnO nanoparticles.

Graphical abstract: ZnO doped highly porous activated charcoal-polyaniline incorporated NiP coatings as high performance electrocatalyst for hydrogen evolution reaction

Article information

Article type
Paper
Submitted
26 Jul 2024
Accepted
14 Aug 2024
First published
05 Sep 2024

New J. Chem., 2024,48, 16278-16288

ZnO doped highly porous activated charcoal-polyaniline incorporated NiP coatings as high performance electrocatalyst for hydrogen evolution reaction

A. R. Sugandhi, A. Mohammed, S. V. S. Nair and R. Sreenivasan, New J. Chem., 2024, 48, 16278 DOI: 10.1039/D4NJ03362K

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