格式化
甲酸脱氢酶
催化作用
还原(数学)
化学
光化学
组合化学
生物化学
数学
几何学
作者
Navendu Paul,Isabel Moura,Luísa B. Maia,Cristina M. Cordas,José J. G. Moura
标识
DOI:10.1002/celc.202500100
摘要
The electrocatalytic reduction of carbon dioxide (CO 2 ) to formate by the enzyme formate dehydrogenase (FDH) makes use of the enzyme's observed reversibility, offering a promising strategy for the mitigation of CO 2 and the production of value‐added compounds. To enhance the catalytic potential of Desulfovibrio desulfuricans FDH ( Dd FDH), a range of artificial and natural redox cofactors is investigated using electrochemical methods. These studies included direct (nonmediated) conditions and mediated conditions employing viologens (methyl and benzyl viologens), and small heme proteins (cytochromes). Methyl viologen acts as an efficient mediator for CO 2 reduction, achieving a very high current density of 216 μA cm −2 . The studies of the different small proteins, namely cytochrome split‐soret ( cyt SS), cytochrome c 3 ( cyt c 3 ), and cytochrome c 552 ( cyt c 552 ), allow the identification of the potential natural physiological partners. These isolated cytochromes, from the same organism, are electrochemically characterized, from which detailed redox processes are determined and later used as mediators to explore Dd FDH catalytic activity in both formate oxidation and CO 2 reduction. Best results are attained with cytochrome cyt SS and cyt c 3, increasing the electrocatalytic activity for formate oxidation by 7.5 times and 5.8 times, respectively.
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