Issue 37, 2025

The Kick Inside: time-resolved mechanistic insights into the DUV-driven interconversion of pyrazole to imidazole

Abstract

The interconversion of aromatic heterocyclic molecules via photochemical scaffold-hopping provides a clean and efficient formation route to otherwise synthetically challenging targets. The interconversion between pyrazole and imidazole is a widely used example in materials science and biochemical applications with arrow-pushing mechanisms used to define the reaction path. To study the photochemically driven isomerisation of pyrazole to imidazole, we combine femtosecond time-resolved photoelectron spectroscopy experiments with ab initio electronic structure calculations. Our results show that excitation to the 1ππ* state in the gas-phase provides a directed ‘kick’ to the system, resulting in the breaking of the N–N bond and formation of a ring-opened biradical intermediate on the vibrationally hot electronic ground state on ultrafast (sub-90 fs) timescales. Once on the vibrationally hot electronic ground state, production of the imidazole photoproduct proceeds via the formation of a three membered ring that subsequently opens and shifts the relative position of the two nitrogen atoms.

Graphical abstract: The Kick Inside: time-resolved mechanistic insights into the DUV-driven interconversion of pyrazole to imidazole

Supplementary files

Article information

Article type
Paper
Submitted
14 Jul 2025
Accepted
23 Aug 2025
First published
26 Aug 2025
This article is Open Access
Creative Commons BY license

Phys. Chem. Chem. Phys., 2025,27, 19762-19771

The Kick Inside: time-resolved mechanistic insights into the DUV-driven interconversion of pyrazole to imidazole

D. J. Hughes, W. B. Ng, R. T. Chapman, G. Healing, M. A. Parkes, J. Rigden, O. J. Smith, E. Springate, J. O. F. Thompson, T. Walmsley, J. L. Woodhouse and R. S. Minns, Phys. Chem. Chem. Phys., 2025, 27, 19762 DOI: 10.1039/D5CP02684A

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