تجاوز إلى المحتوى الرئيسي

Flowery ln2MnSe4 Novel Electrocatalyst Developed via Anion Exchange Strategy for EfficientWater Splitting

Author name : mohamed sulman saifalnasser karram
Publication Date : 2022-06-28
Journal Name : Nanomaterials

Abstract

Oxygen and hydrogen generated by water electrolysis may be utilized as a clean chemical
fuel with high gravimetric energy density and energy conversion efficiency. The hydrogen fuel
will be the alternative to traditional fossil fuels in the future, which are near to exhaustion and
cause pollution. In the present study, flowery-shaped In2MnSe4 nanoelectrocatalyst is fabricated
by anion exchange reaction directly grown on nickel foam (NF) in 1.0 M KOH medium for oxygen
evolution reaction (OER). The physiochemical and electrical characterization techniques are used to
investigate the chemical structure, morphology, and electrical properties of the In2MnSe4 material.
The electrochemical result indicates that synthesized material exhibits a smaller value of Tafel slope
(86 mV/dec), lower overpotential (259 mV), and high stability for 37 h with small deterioration in
the current density for a long time. Hence, the fabricated material responds with an extraordinary
performance for the OER process and for many other applications in the future.

Keywords

In2MnSe4; flower shape; anion exchange method; electrocatalyst; water splitting

Publication Link

https://doi.org/10.3390/nano12132209

Block_researches_list_suggestions

Suggestions to read

HIDS-IoMT: A Deep Learning-Based Intelligent Intrusion Detection System for the Internet of Medical Things
Ahlem . Harchy Ep Berguiga
Generalized first approximation Matsumoto metric
AMR SOLIMAN MAHMOUD HASSAN
Structure–Performance Relationship of Novel Azo-Salicylaldehyde Disperse Dyes: Dyeing Optimization and Theoretical Insights
EBTSAM KHALEFAH H ALENEZY
“Synthesis and Characterization of SnO₂/α-Fe₂O₃, In₂O₃/α-Fe₂O₃, and ZnO/α-Fe₂O₃ Thin Films: Photocatalytic and Antibacterial Applications”
Asma Arfaoui
تواصل معنا