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Updated: May 16, 2025

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Published on: December 6, 2021
Ni-Co bimetallic phosphide catalyst toward electrocatalytic ammonia synthesis under ambient conditions
Dongnan Zhao1,2, Zhixian Mao2,3, Shengbo Zhang2,3
1School of Energy Materials and Chemical Engineering, Hefei University Hefei 230601 China.
Abstract:
Electrocatalytic nitrate reduction reaction (NitRR) under ambient conditions is a promising sustainable and eco-friendly method for ammonia (NH3) synthesis, which currently highly relies on the energy-consuming Haber-Bosch process with enormous CO2 emissions. In this work, we report the synthesis of a Ni-Co bimetallic phosphide catalyst (NiCoP) using the traditional hydrothermal combined high-temperature phosphorization method. Compared with monometallic phosphides such as Ni2P and CoP, the as-synthesized NiCoP catalyst with synergistic effects exhibits remarkable NitRR performance with the highest faradaic efficiency (FE) of 91.3 ± 4.4% at -1.2 V (vs. RHE) with the maximum NH3 yield rate of 5553.4 ± 400.8 μg h-1 cm-2 at -1.4 V (vs. RHE). Further in situ different electrochemical mass spectrometry (DEMS) analysis is employed to identify the intermediate produced during the electrocatalytic NitRR process, confirming NiCoP as a promising electrocatalyst for NH3 synthesis.
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