4.7 Article

Revisiting the Nonadiabatic Process in 1,2-Dioxetane

Journal

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
Volume 9, Issue 12, Pages 5404-5411

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ct4007844

Keywords

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Funding

  1. Spanish MINECO source [CTQ2010-14892]
  2. Behrouz Nik Ind
  3. Swedish Research Council (VR)
  4. SNIC through Uppsala Multidisciplinary Center for Advanced Computational Science (UPPMAX) [s00112-19]

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Determining the ground and excited-state decomposition mechanisms of 1,2-dioxetane is essential to understand the chemiluminescence and bioluminescence phenomena. Several experimental and theoretical studies has been performed in the past without reaching a converged description. The reason is in part associated with the complex nonadiabatic process taking place along the reaction. The present study is an extension of a previous work (De Vico, L.; Liu, Y.-J.; Krogh, J. W.; Lindh, R. J. Phys. Chem. A 2007, 111, 8013-8019) in which a two-step mechanism was established for the chemiluminescence involving asynchronous O-O' and C-C' bond dissociations. New high-level multistate multi configurational reference second-order perturbation theory calculations and ab initio molecular dynamics simulations at constant temperature are performed in the present study, which provide further details on the mechanisms and allow to rationalize further experimental observations. In particular, the new results explain the high ratio of triplet to singlet dissociation products.

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