1. Deep eutectic Solvents-Assisted synthesis of NiFe-LDHs/Mo 2 Ti 2 C 3 : A bifunctional electrocatalyst for overall electrochemical water splitting in alkaline media.
- Author
-
Kokulnathan T, Honnappa B, Wang TJ, Matheswaran Arun Kumar K, and Sekar K
- Abstract
The development of efficient and stable electrocatalysts is crucial for the advancement of green and clean hydrogen energy technologies. In this work, we synthesized a nanocomposite of nickel-iron layered double hydroxide/molybdenum titanium carbide (NiFe-LDHs/Mo
2 Ti2 C3 ) using a deep eutectic solvent (DESs) by the solvothermal method. The formation of NiFe-LDHs/Mo2 Ti2 C3 nanocomposite was confirmed by various electron microscopic and spectroscopic techniques. The synthesized nanocomposite was investigated as a bifunctional electrocatalyst for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) under the alkaline condition. The NiFe-LDHs/Mo2 Ti2 C3 -based electrodes exhibit small overpotentials of 204 and 306 mV for HER and OER at a current density of 10 mA cm-2 . The anchor of NiFe-LDHs on the surface of Mo2 Ti2 C3 induces an interfacial synergistic effect, leading to a significantly improvement in electrochemical performance. Remarkably, the proposed NiFe-LDHs/Mo2 Ti2 C3 modified electrode demonstrates superior performance compared to many recently reported LDHs and MXenes-based electrocatalysts in an alkaline environment. Furthermore, a symmetrical two-electrode water splitting setup employing the NiFe-LDHs/Mo2 Ti2 C3 electrocatalyst requires an electrolysis voltage of 1.65 V to achieve a current density of 10 mA cm-2 . The findings provide a new perspective on the rational design and synthesis of multifunctional electrocatalysts for electrochemical applications., Competing Interests: Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper., (Copyright © 2024 Elsevier Inc. All rights reserved.)- Published
- 2025
- Full Text
- View/download PDF