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Reducing CO2 selectively to one of the several C1 products is challenging, as the thermodynamic reduction potentials for the different n e−/n H+ reductions of CO2 are similar and so is the reduction potential for H+ reduction. Recently, Halime, Aukauloo, and co‐workers have taken inspiration from the active site of nickel CO dehydrogenase (Ni‐CODH) to design bimetallic iron porphyrins bridged by a...
Reducing CO2 selectively to one of the several C1 products is challenging, as the thermodynamic reduction potentials for the different n e−/n H+ reductions of CO2 are similar and so is the reduction potential for H+ reduction. Recently, Halime, Aukauloo, and co‐workers have taken inspiration from the active site of nickel CO dehydrogenase (Ni‐CODH) to design bimetallic iron porphyrins bridged by a...
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