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Crystalline-Amorphous Ni 3 S 2 -NiMoO 4 Heterostructure for Durable Urea Electrolysis-Assisted Hydrogen Production at High Current Density.

Xiaoyan ZhuoWenjie JiangTianqi YuGuangfu QianJinli ChenHaifeng YangShibin Yin
Published in: ACS applied materials & interfaces (2022)
Developing bifunctional catalysts with good performance at a high current density for the urea oxidation reaction (UOR) and the hydrogen evolution reaction (HER) can effectively relieve the severe environmental and energy pressures. Herein, amorphous NiMoO 4 decorated Ni 3 S 2 grown on nickel foam (Ni 3 S 2 -NiMoO 4 /NF) is prepared to accelerate UOR and HER. The crystalline-amorphous heterostructure could regulate the interfacial electron structure to reduce the electron density near Ni 3 S 2 for optimizing UOR and HER. The decoration of NiMoO 4 enhances its anti-poisoning ability for CO-intermediate species to show good stability at high current densities. Meanwhile, the nano-/microstructure with high hydrophilicity improves mass transfer and the accessibility of electrolyte. Driving high current densities of ±1000 mA cm -2 , it merely needs 1.38 V (UOR) and -263 mV (HER). For urea electrolysis, it can deliver 1000 mA cm -2 at 1.73 V and stably operate at 500 mA cm -2 for 120 h. Therefore, this study provides new ideas for durable urea electrolysis-assisted H 2 production.
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