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Controlled Defective Engineering on CuIr Catalyst Promotes Nitrate Selective Reduction to Ammonia. | LitMetric

Controlled Defective Engineering on CuIr Catalyst Promotes Nitrate Selective Reduction to Ammonia.

ACS Nano

College of Chemistry and Chemical Engineering, College of Energy Material and Chemistry, Inner Mongolia University, Hohhot 010021, China.

Published: September 2024


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Article Abstract

Electrochemical nitrate reduction reaction (NORR) is a promising low-carbon and environmentally friendly approach for the production of ammonia (NH). Herein, we develop a high-temperature quenched copper (Cu) catalyst with the aim of inducing nonequilibrium phase transformation, revealing the multiple defects (distortion, dislocations, vacancies, etc.) presented in Cu, which lead to low overpotential for NORR and high efficiency for NH production. Further loading a low content of iridium (Ir) species on the Cu surface improves the reactivity and ammonia selectivity. The resultant CuIr electrode exhibits a Faradaic efficiency of 93% and a record yield of 6.01 mmol h cm at -0.22 V exceeding those of state-of-the-art NORR catalysts. Detailed investigations have demonstrated that the synergistic effect between multiple defects and Ir decoration effectively regulate the d-band center of copper, change the adsorption state of the catalyst surface, and promote the adsorption and reduction of intermediates and reactants. The strong H* adsorption ability of the Ir element provides more active hydrogen for the generation of ammonia, promoting the reduction of nitrate to NH.

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http://dx.doi.org/10.1021/acsnano.4c05772DOI Listing

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