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Updated: May 12, 2025

Synthesis and Performance Characterizations of Transition Metal Single Atom Catalyst for Electrochemical CO2 Reduction
Published on: April 10, 2018
New strategy for the enhanced electrocatalytic reduction of nitrate: Construction of charge polarization by
Yiying Li1, Ting Su1, Guodong Chai1
1Engineering Lab for Water Pollution Control and Resources Recovery, School of Environment, Northeast Normal University, Changchun 130117, China.
Abstract:
Modulating the adsorption of nitrate ions and intermediates is an effective strategy to enhance the electrocatalytic performance on the conversion of NO3- to NH3. Here, a Cu1Ni1/NiFeP/Nickel foam (NF) nanosheet array electrode with heterointerfaces was designed and synthesized to achieve high-performance nitrate reduction to ammonia (NRA). The interfacial charge polarization at the heterointerface between CuNi and NiFeP induces an electron deficiency on the Cu surface, enhancing the adsorption of nitrate ions. Experimental and theoretical calculations confirmed that Cu sites regulate the adsorption of nitrate ions and intermediates during NRA, whereas Ni and NiFeP sites facilitate the dissociation of water molecules and provide *H to Cu sites on demand. Owning to the combination of Cu, Ni, and NiFeP tandem catalytic sites, Cu1Ni1/NiFeP/NF exhibited a significant synergistic effect with a synergy index of 60.0 %. When the initial NO3--N concentration was 100 mg L-1, the NRA performance of Cu1Ni1/NiFeP/NF (NO3--N conversion: 98.9 %, Faradaic efficiency: 94.0 %, NH3-N yield: 537.0 μg h-1 cm-2, and NH3-N selectivity: 87.3 %) significantly outperformed that of the Cu1Ni1/NF and NiFeP/NF electrodes. This study elucidates the mechanism of the enhanced NRA process at the Cu1Ni1/NiFeP heterointerface, and provides an efficient and sustainable approach for treating nitrate-containing wastewater.
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