Issue 10, 2024

Lessons learnt in photocatalysis – the influence of solvent polarity and the photostability of the photocatalyst

Abstract

Herein, we show that there is significant variation in both the triplet energies and redox properties of photocatalysts as a function of solvent based on a study of eight PCs in four solvents of varying polarity. A range of photocatalytic electron and energy transfer reactions were investigated using a subset of the PCs. For the photoredox reactions, the yields are not correlated with solvent polarity. Instead, when the PC could promote the formation of the target product, we observed photodegradation for all PCs across all solvents, something that is rarely investigated in the literature. This, therefore, makes it difficult to ascertain whether the parent PC and/or the photodegraded product is responsible for the photochemistry, or indeed, whether photodegradation is actually detrimental to the reaction yield. Conversely, the PCs were found to be photostable for energy transfer reactions; however, yields were not correlated to the triplet energies of the PCs, highlighting that triplet energies alone are not a suitable descriptor to discriminate the performance between PCs in photoinduced energy transfer processes.

Graphical abstract: Lessons learnt in photocatalysis – the influence of solvent polarity and the photostability of the photocatalyst

Supplementary files

Article information

Article type
Edge Article
Submitted
04 Dec 2023
Accepted
30 Jan 2024
First published
08 Feb 2024
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2024,15, 3741-3757

Lessons learnt in photocatalysis – the influence of solvent polarity and the photostability of the photocatalyst

M. A. Bryden, F. Millward, O. S. Lee, L. Cork, M. C. Gather, A. Steffen and E. Zysman-Colman, Chem. Sci., 2024, 15, 3741 DOI: 10.1039/D3SC06499A

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