Antenna Effect in Noble Metal-Free Dye-Sensitized Photocatalytic Systems Enhances CO2-to-CO Conversion

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Abstract

Dye-sensitized photocatalytic systems (DSPs) have been extensively investigated for solar-driven hydrogen (H2) evolution. However, their application in carbon dioxide (CO2) reduction remains limited. Furthermore, current solar-driven CO2-to-CO DSPs typically employ rhenium complexes as catalysts. In this study, we have developed DSPs that incorporate noble metal-free components, specifically a zinc-porphyrin as photosensitizer (PS) and a cobalt-quaterpyridine as catalyst (CAT). Taking a significant stride forward, we have achieved an antenna effect for the first time in CO2-to-CO DSPs by introducing a Bodipy as an additional chromophore to enhance light harvesting efficiency. The energy transfer from Bodipy to zinc porphyrin resulted in remarkable stability (turn over number (TON)=759 vs. CAT), and high CO evolution activity (42 mmol g−1 h−1 vs. CAT).

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Nikolaou, V., Govind, C., Balanikas, E., Bharti, J., Diring, S., Vauthey, E., … Odobel, F. (2024). Antenna Effect in Noble Metal-Free Dye-Sensitized Photocatalytic Systems Enhances CO2-to-CO Conversion. Angewandte Chemie - International Edition, 63(13). https://doi.org/10.1002/anie.202318299

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