Insights into the Interfacial Charge Transfer Dynamics in Semiconductor-Molecular Catalyst Assemblies for Photo-induced CO2 Reduction

Fecha de publicación

2024-02-28



Resumen

This mini–review summarises examples of photo and photoelectrochemical CO2 reduction reactions (CO2RR) using semiconductor–molecular catalyst–based hybrid assemblies in which studies of charge transfer dynamics were also performed. In these catalysts, the grand challenges are controlling ultra–fast one–electron charge separation and simultaneously governing its impact on the efficiency and product selectivity in the multielectron and multi–proton–assisted CO2RR. In practice, several unwanted electron recombination processes occur in the femtosecond to millisecond timescale range impacting the overall catalysis efficiency. Titanium di-oxide (TiO2) nanoparticle, mesoporous TiO2 film, copper indium sulphide (CuInS2) quantum dots were used as semiconductor materials, in turn rhenium (I) bipyridine, cobalt (II) terpyridine, cobaloxamine complex, and iron (III) porphyrins were investigated as molecular catalysts. The results of the charge transfer dynamic studies operating in such hybrid systems shed light on their charge accumulation processes, their rate constants for the intramolecular charge transfer processes and the decay lifetimes of the different excited state species that are produced. Moreover, a comprehensive understanding of the catalysts’ charge transfer dynamics is crucial to identifying detrimental charge recombination pathways. These undesired pathways can be used as rational basis for improving the design of future multi–redox–driven hybrid catalysts.

Tipo de documento

Artículo


Versión publicada

Lengua

Inglés

Materias CDU

Palabras clave

Química

Páginas

14 p.

Publicado por

Chemistry Europe

Número del acuerdo de la subvención

T. C. acknowledges Beatriu de Pinós 2021 grant from the Government of Catalunya AGAUR (2021-BP-00204)

B. D.-T. thanks to MICINN and ESF, for a predoctoral grant (PRE2020-092525)

E. P. and P. B gratefully acknowledge financial support from ICIQ, MICINN ( PID2022-139866NB−I00 and PID2020-114020GB−I00)

Severo Ochoa Grant MCIN/AEI/10.13039/501100011033 (CEX2019-000925-S)

CERCA Programme/Generalitat de Catalunya

AGAUR (2021SGR00851 and 2021SGR01261)

ICREA

NEFERTITI project (H2020, Grant agreement ID: 101022202)

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