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Ni2P nanosheet array for high-efficiency electrohydrogenation of nitrite to ammonia at ambient conditions

JOURNAL OF COLLOID AND INTERFACE SCIENCE [2022]
Guilai Wen, Jie Liang, Longcheng Zhang, Tingshuai Li, Qian Liu, Xuguang An, Xifeng Shi, Yang Liu, Shuyan Gao, Abdullah M. Asiri, Yonglan Luo, Qingquan Kong, Xuping Sun
ABSTRACT

Ammonia (NH 3 ) plays an important role in agriculture and industry. The industry-scale production mainly depends on the Haber-Bosch process suffering from issues of environment pollution and energy consumption. Electrochemical reduction can degrade nitrite (NO 2 – ) pollutants in the environment and convert it into more valuable NH 3 . Here, Ni 2 P nanosheet array on nickel foam is proposed as a 3D electrocatalyst for high-efficiency electrohydrogenation of NO 2 – to NH 3 under ambient reaction conditions. When tested in 0.1 M phosphate buffer saline with 200 ppm NO 2 – , such Ni 2 P/NF is able to obtain a large NH 3 yield rate of 2692.2 ± 92.1 μg h −1 cm −2 (3282.9 ± 112.3 μg h −1 mg cat. −1 ), a high Faradic efficiency of 90.2 ± 3.0%, and selectivity of 87.0 ± 1.7% at −0.3 V versus a reversible hydrogen electrode. After 10 h of electrocatalytic reduction, the conversion rate of NO 2 – achieves near 100%. The catalytic mechanism is further investigated by density functional theory calculations.

MATERIALS

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