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Article summary:

1. The article explores the restructuring of Cu single atoms to nanoparticles during electrochemical reduction of nitrate to ammonia.

2. The maximum production rate of ammonia was found to be 4.5 mg cm–2 h–1 with a Faradaic efficiency of 84.7% at −1.00 V versus RHE.

3. Post-deposited Cu NP catalyst and density functional theory calculations were used to corroborate that the Cu nanoparticles are the genuine active sites for nitrate reduction to ammonia.

Article analysis:

The article is generally reliable and trustworthy, as it provides evidence from post-deposited Cu NP catalyst and density functional theory calculations to support its claims about the potential-driven restructuring of Cu single atoms to nanoparticles for boosting the electrochemical reduction of nitrate to ammonia. The article also presents both sides equally, noting possible risks associated with the process such as potential environmental impacts due to increased ammonia production rates. However, there are some missing points of consideration in the article, such as potential economic costs associated with this process or any other alternative processes that could be used instead. Additionally, there is no mention of any unexplored counterarguments or unsupported claims in the article, which could have been addressed in order to further strengthen its reliability and trustworthiness.