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A practical computational protocol for photocatalytic reactions

Category: Main page, Research highlights

Understanding photocatalytic reaction thermodynamics requires going beyond the conventional ground-state band alignment picture. This presents a challenge in heterogeneous catalysts, where conventional excited-state descriptions are difficult to implement. Centre of New Technologies researchers from the newly formed Materials and Processes Simulation Laboratory developed a new, practical computational protocol that explicitly incorporates excited-state contributions into heterogeneous photocatalytic reactions. The approach expands the free energy state function with excited state contributions, enabling a consistent comparison of reaction profiles and a more realistic description, while adding only a marginal computational cost.

The study, co-authored by Mateusz Wlazło (first author) and Silvio Osella (corresponding author) has been published in the Chemical Communications journal.

M. Wlazło, W.A. Goddard, S. Osella, Chemical Communications, 2026, 62, 4828 – 4832. doi: 10.1039/D5CC06211J