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Langmuir· 2026Q1

Constructing a NiCu/C/NiCu Interface for Alkaline Saline Water Electrolysis

Huinian Zuo, Zechen Xiao, K R Xiao, Wei Yang et al.

Short summary

A needle-like NiCu/C/NiCu catalyst with graphene-encapsulated NiCu alloy nanoparticles achieves low overpotentials (53.8 mV HER, 298.5 mV OER in 1M KOH) and high stability for alkaline saline water splitting.

AI-generated from the title and abstract; the full text is not read.

Key points

  • A NiCu/C/NiCu catalyst with graphene-encapsulated NiCu alloy nanoparticles was synthesized via low-temperature CVD.
  • The catalyst shows low HER (53.8 mV) and OER (298.5 mV) overpotentials in 1M KOH at 10 mA cm–2.
  • In 1M KOH + 0.5M NaCl, HER overpotential decreased to 38.4 mV while OER overpotential was 304.1 mV.
  • The catalyst enabled saline water splitting at 100 mA cm–2 with a voltage of 1.86 V and demonstrated 65-hour stability.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Interface engineering is a useful way to fabricate nonprecious-based electrocatalyst materials for easy overall water splitting (OWS), which is of great importance for renewable hydrogen energy production. Herein, we designed a needle-like catalyst by a low-temperature CVD method using NiCu alloy nanoparticles evenly embedded in the graphene shell, resulting in a large-scale NiCu/C/NiCu interface. The few-layer graphene prevents the NiCu alloy nanoparticles from melting and growing and increases the number of interfaces. Meanwhile, the C layer coated on the surface of the NiCu alloy hinders the erosion of Cl– to the catalyst, showing excellent stability in the overall water splitting. The HER and OER overpotentials of the needle-like catalyst in a 1 M KOH solution were 53.8 and 298.5 mV (10 mA cm–2), respectively, and the HER and OER overpotentials in a 1 M KOH+0.5 M NaCl solution were 38.4 and 304.1 mV (10 mA cm–2), respectively. Assembled with two electrodes in a cell for saline water splitting, it reaches the current density of 100 mA cm–2 at an operating voltage of 1.86 V. Additionally, it also shows superb stability for 65 h at a high current density.

The authors' abstract, as published at the source. Langmuir, 2026 · DOI ↗

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Field: Renewable Energy, Sustainability and the Environment

Renewable Energy, Sustainability and the EnvironmentEnergy