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Hierarchical nickel phosphide-MXene nanosheets composite as durable electrocatalyst for electrochemical hydrogen
Ranjit D Mohili1, Kajal Mahabari1, Monika Patel1
1Advanced Hybrid Nanomaterial Laboratory, Department of Chemistry, School of Energy Technology, Pandit Deendayal Energy University, Gandhinagar 382426, Gujarat, India.
Abstract:
In this study, a thoroughly durable hydrogen evolution reaction (HER) electrocatalyst, nickel phosphide (NiP2), was grown on conductive Ti3C2MXenes synthesized via a non-HF hydrothermal route. This approach utilizes MXenes as both a support and promoter to accelerate charge transfer, enabling efficient HER at a very low overpotential. A hydrothermal strategy was developed for thein-situgrowth of NiP2microflowers on Ti3C2sheets at low temperature. The improved delamination of MXenes achieved through this novel method facilitates the growth and intercalation of active electrocatalysts betwixt the 2d MXene sheets. High electrical conductivity of MXenes, coupled with the strong interfacial coupling between MXene sheets and NiP2, significantly enhances the HER performance compared to pristine MXene or NiP2alone. The as-prepared MXene-NiP2composite demonstrates excellent stability and current density, achieving an overpotential of ∼70 mV, which is comparable to state-of-the-art Pt-based electrocatalysts. This strategy for constructing MXene-based heterostructures demonstrates the NiP2/MXene composite as an outstanding candidate for electrolytic hydrogen production. Additionally, MXenes are highlighted as ideal conductive supports for the growth of other electrocatalysts, paving the way for the development of heterostructured materials with enhanced stability in various media, making the water-splitting process more cost-effective.
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