Electrocatalytic CO 2 reduction to formate by a cobalt phosphino-thiolate complex

Electrochemical conversion of CO to value-added products serves as an attractive method to store renewable energy as energy-dense fuels. Selectivity in this type of conversion can be limited, often leading to the formation of side products such as H . The activity of a cobalt phosphino-thiolate comp...

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Veröffentlicht in:Chemical science (Cambridge) 2024-05, Vol.15 (17), p.6385-6396
Hauptverfasser: Intrator, Jeremy A, Velazquez, David A, Fan, Sicheng, Mastrobattista, Ellie, Yu, Christine, Marinescu, Smaranda C
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Sprache:eng
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Zusammenfassung:Electrochemical conversion of CO to value-added products serves as an attractive method to store renewable energy as energy-dense fuels. Selectivity in this type of conversion can be limited, often leading to the formation of side products such as H . The activity of a cobalt phosphino-thiolate complex ([Co(triphos)(bdt)] ) towards the selective reduction of CO to formate is explored in this report. In the presence of H O, selective production of formate (as high as 94%) is observed at overpotentials of 750 mV, displaying negligible current degradation during long-term electrolysis experiments ranging as long as 24 hours. Chemical reduction studies of [Co(triphos)(bdt)] indicates deligation of the apical phosphine moiety is likely before catalysis. Computational and experimental results suggest a metal-hydride pathway, indicating an ECEC based mechanism.
ISSN:2041-6520
2041-6539
DOI:10.1039/d3sc06805f