4.7 Article

Recent developments in designing Cu-based electrocatalysts and advanced strategies for electrochemical nitrate reduction to ammonia

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ELSEVIER SCI LTD
DOI: 10.1016/j.jece.2023.110927

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Electrochemical nitrate reduction; Copper electrocatalysts; Design strategies; Ammonia synthesis

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This review focuses on the role of copper-based catalysts in the electrochemical conversion of nitrate to ammonia and identifies the factors that affect their performance. Strategies for enhancing catalytic efficiency and recent advancements in the design of copper-based electrocatalysts are also discussed.
Nitrate with its high stability and persistence in water can pose a serious threat to both human health and aquatic ecosystems. To tackle this issue, the electrochemical nitrate reduction reaction (NO3RR) is considered the most effective solution for reducing excess nitrate (NO3-) in water and wastewater, into a value-added product ammonia (NH3). The efficiency of NO3- removal during the electrochemical reduction process is directly influenced by the genuine catalysts, enable them one of the most crucial factors. The objective of this review is to elucidate the function of copper-based catalysts in the electrochemical conversion of NO3- to NH3 and to identify the factors that affect the performance of these catalysts. We have also devised strategies that can be applied to enhance catalytic efficiency, along with offering an overview of the recent advancements achieved in the design of copper-based electrocatalysts. This comprehensive review will provide a detailed insight into the role of Cubased materials in electrochemical NO3- reduction and the advancement of effective electrode materials for the intended reactions.

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