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◆ ChemistryOpen2025-11-02· Tafel equation

Impact of Electrolyte Temperature on Solution‐Combustion Synthesized NiO/Ni Nanoparticles as Oxygen Evolution Reaction Electrocatalyst

Easwari Padma Kumari, Anand Kumar, Faris Tarlochan, Mohammed J. Al‐Marri

原始摘要(英文原文)· Original abstract
Oxygen evolution reaction (OER) is an important half‐cell reaction in water electrolysis; however, its sluggish kinetics and high overpotential limits efficiency, require highly active and stable catalysts. This study explores the effect of electrolyte temperature on the OER activity of NiO/Ni catalyst synthesized via solution combustion synthesis. Results reveal a remarkable reduction in overpotential from 550 to 356 mV, along with a significant increase in current density, demonstrating the impact of electrolyte temperature on OER kinetics. The Tafel slope decrease progressively, reaching 75.8 mV dec −1 at 30 °C, indicating improved reaction kinetics and charge transfer efficiency. Additionally, the increase in double‐layer capacitance ( C dl ) with temperature confirms greater exposure of electrochemical surface area, providing more active sites for the reaction. Stability tests over 1000 CV cycles confirmed excellent durability, making NiO/Ni a highly efficient catalyst for alkaline OER. These findings highlight the electrolyte temperature optimization as an effective approach to improving catalytic performance of NiO/Ni to act as a promising material for cost effective sustainable energy applications.
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Impact of Electrolyte Temperature on Solution‐Combustion Synthesized NiO/Ni Nanoparticles as Oxygen Evolution Reaction Electrocatalyst — 科研速览 Science Skim