Building dual-phased NiP-NiPO electrocatalysts for efficient urea oxidation reaction

The development of highly efficient electrocatalysts for urea oxidation reaction (UOR) is crucial for reproducible and clean energy technologies. Herein, dual-phased nickel-based cost-effective catalyst nickel phosphide (Ni 2 P)-nickel metaphosphate (Ni 2 P 4 O 12 ) microspheric nanoparticles were f...

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Veröffentlicht in:New journal of chemistry 2023-02, Vol.47 (8), p.49-417
Hauptverfasser: Zhou, Jiajia, Sun, Xiujuan, Tan, Wenjuan, Cao, Qiuhan, Zhao, Yongjie, Ding, Rui, Zhang, Yuwei, Liu, Enhui, Gao, Ping
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Zusammenfassung:The development of highly efficient electrocatalysts for urea oxidation reaction (UOR) is crucial for reproducible and clean energy technologies. Herein, dual-phased nickel-based cost-effective catalyst nickel phosphide (Ni 2 P)-nickel metaphosphate (Ni 2 P 4 O 12 ) microspheric nanoparticles were fabricated through a two-step hydrothermal-phosphorization process by preciously controlling the feeding ratios of the Ni precursor and the P source. It merely needs a potential of 1.35 V vs. RHE to deliver a current density of 10 mA cm −2 with a small Tafel slop of 55 mV dec −1 and maintains high catalytic activity for 10 h in 1.0 M KOH with 0.33 M urea solution. The synergy effect and modulation of the electronic structure between Ni 2 P and Ni 2 P 4 O 12 could be the reason for the good UOR performance. This work provides a new perspective for the further design of high-performance electrocatalysts in diverse energy fields. Ni 2 P-Ni 2 P 4 O 12 structure with abundant mesopores demonstrates excellent catalytic activity toward alkaline urea electro-oxidation reaction.
ISSN:1144-0546
1369-9261
DOI:10.1039/d2nj06299b