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Modulating intramolecular electron and proton transfer kinetics for promoting carbon dioxide conversion.

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A novel pentagon-heptagon paired azulene group that possesses a large dipole moment is immobilized onto a porphyrin. The as-prepared azulene iron porphyrin exhibits a narrower bandgap and higher electrocatalytic CO2… Click to show full abstract

A novel pentagon-heptagon paired azulene group that possesses a large dipole moment is immobilized onto a porphyrin. The as-prepared azulene iron porphyrin exhibits a narrower bandgap and higher electrocatalytic CO2 reduction activity than the pristine iron porphyrin. The maximum CO faradaic efficiency reaches 99.9%, which is the state-of-the-art value among molecular catalysts.

Keywords: kinetics promoting; proton transfer; electron proton; intramolecular electron; modulating intramolecular; transfer kinetics

Journal Title: Chemical communications
Year Published: 2022

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