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Three birds with one stone: Ni-MoN nano-heterostructures encapsulated in NCNTs for efficient hydrogen production via overall water splitting and urea electrolysis

NEW JOURNAL OF CHEMISTRY [2025]
Xinglong Gou, Yumei Liao, Zhimin He, Wei Hong, Qin Dong, Rong Li
ABSTRACT

Development of efficient multifunctional electrocatalysts for hydrogen production from overall water splitting (OWS) and urea electrolysis (UE) is highly desired yet challenging. Herein, Ni-MoN nano-heterostructures encapsulated in NCNTs have been successfully fabricated on Cu foam (NMN@NC/CF), which exhibits excellent trifunctional catalytic activity toward hydrogen evolution (HER, 10, 1200 = 69, 265 mV), oxygen evolution (OER, 10 = 191 mV) and urea oxidation reaction (UOR, E10, 500 = 1.316, 1.450 V), outperforming the noble metal-based catalysts due to its unique structure and intrinsic catalytic capability. Furthermore, the two-electrode electrolyser using NMN@NC/CF as both the cathode and anode needs much lower voltage of 1.376 V for UE than the value of 1.521 V for OWS to reach 10 mA cm-2, and it can keep stable over 100 h during continuous UE operation at 500 mA cm-2, demonstrating great promise for simultaneous energy-saving hydrogen production and remediation of urea-containing wastewater.

MATERIALS

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