Published September 12, 2024 | Version v1

Porphyrins on Acid: Kinetics of the Photoinduced-Protonation of tetrakis(4-carboxyphenyl)-porphyrin

Description

Free-base porphyrins can be protonated, which significantly impacts their electronic and excited state properties. While excited state dynamics are well explored for either neutral or fully protonated porphyrins, the intermediate region has not yet been explored, although their potential implications for photocatalytic reactions are evident. This study explores how partial protonation affects the nature and properties of photoexcited states of tetrakis(4-carboxyphenyl)porphyrin (TCPP) using steady-state and nanosecond transient absorption spectroscopy. Global-fit analysis of the decay curves revealed the formation of a protonated excited triplet state from the neutral triplet state, as well as the long lifetimes of these species of up to 120 µs. The photoexcited triplet state of TCPP functions as a photobase, which was confirmed by computational analysis of the electron density of the exited states showing increased nucleophilicity at the unprotonated nitrogen atoms of the porphyrin core. These findings indicate that photo-induced protonated excited triplet states can function as electron acceptors with anodically shifted redox potentials, opening new pathways for porphyrin-based photoreactions.

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Additional details

Funding

FWF Austrian Science Fund
Operando Studies on photoactive MOFs J4607–N
Dutch Research Council
Shining Light on Reactions in Artificial Leaves: A Multi-Spectroscopic Approach OCENW.XS22.4.067
Dutch Research Council
Bringing molecules together: Photoredox chemistry squeezed into small pores VI.Veni.222.253

Dates

Available
2024-10-30