articleScienceJun 15, 2023Closed access

Modification of ground-state chemical reactivity via light–matter coherence in infrared cavities

Bilkent University · Universidad de Santiago de Chile · +2 more institutions

PubMed
Indexed incrossrefpubmed

Abstract

Reaction-rate modifications for chemical processes due to strong coupling between reactant molecular vibrations and the cavity vacuum have been reported; however, no currently accepted mechanisms explain these observations. In this work, reaction-rate constants were extracted from evolving cavity transmission spectra, revealing resonant suppression of the intracavity reaction rate for alcoholysis of phenyl isocyanate with cyclohexanol. We observed up to an 80% suppression of the rate by tuning cavity modes to be resonant with the reactant isocyanate (NCO) stretch, the product carbonyl (CO) stretch, and cooperative reactant-solvent modes (CH). These results were interpreted using an open quantum system model…

No related works found for this paper.