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August 20, 2015Journal of the American Chemical Society135 citations

Intermediates Involved in the 2e–/2H+ Reduction of CO2 to CO by Iron(0) Porphyrin

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BMBiswajit MondalARAtanu RanaPSPritha Sen

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Abstract

The reduction of CO2 by an iron porphyrin complex with a hydrogen bonding distal pocket involves at least two intermediates. The resonance Raman data of intermediate I, which could only be stabilized at -95 °C, indicates that it is a Fe(II)-CO2(2-) adduct and is followed by an another intermediate II at -80 °C where the bound CO2 in intermediate I is protonated to form a Fe(II)-COOH species. While the initial protonation can be achieved using weak proton sources like MeOH and PhOH, the facile heterolytic cleavage of the C-OH bond in intermediate II requires strong acids.

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Cite This Study

Mondal et al. (2015) studied this question.

synapsesocial.com/papers/6a61316ecc82e3daa43f6776https://doi.org/10.1021/jacs.5b05992
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