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Nonadiabatic Kinetics in the Intermediate Coupling Regime: Comparing Molecular Dynamics to an Energy-Grained Master Equation

Shchepanovska, Darya; Shannon, Robin J.; Curchod, Basile F.E.; Glowacki, David R.

Nonadiabatic Kinetics in the Intermediate Coupling Regime: Comparing Molecular Dynamics to an Energy-Grained Master Equation Thumbnail


Authors

Darya Shchepanovska

Robin J. Shannon

David R. Glowacki



Abstract

We propose and test an extension of the energy-grained master equation (EGME) for treating nonadiabatic (NA) hopping between different potential energy surfaces, which enables us to model the competition between stepwise collisional relaxation and kinetic processes which transfer population between different electronic states of the same spin symmetry. By incorporating Zhu–Nakamura theory into the EGME, we are able to treat NA passages beyond the simple Landau–Zener approximation, along with the corresponding treatments of zero-point energy and tunneling probability. To evaluate the performance of this NA-EGME approach, we carried out detailed studies of the UV photodynamics of the volatile organic compound C6-hydroperoxy aldehyde (C6-HPALD) using on-the-fly ab initio molecular dynamics and trajectory surface hopping. For this multichromophore molecule, we show that the EGME is able to capture important aspects of the dynamics, including kinetic timescales, and diabatic trapping. Such an approach provides a promising and efficient strategy for treating the long-time dynamics of photoexcited molecules in regimes which are difficult to capture using atomistic on-the-fly molecular dynamics.

Citation

Shchepanovska, D., Shannon, R. J., Curchod, B. F., & Glowacki, D. R. (2021). Nonadiabatic Kinetics in the Intermediate Coupling Regime: Comparing Molecular Dynamics to an Energy-Grained Master Equation. The Journal of Physical Chemistry A, 125(16), 3473-3488. https://doi.org/10.1021/acs.jpca.1c01260

Journal Article Type Article
Acceptance Date Mar 23, 2021
Online Publication Date Apr 21, 2021
Publication Date Apr 29, 2021
Deposit Date May 10, 2021
Publicly Available Date Apr 21, 2022
Journal The Journal of Physical Chemistry A
Print ISSN 1089-5639
Electronic ISSN 1520-5215
Publisher American Chemical Society
Peer Reviewed Peer Reviewed
Volume 125
Issue 16
Pages 3473-3488
DOI https://doi.org/10.1021/acs.jpca.1c01260
Public URL https://durham-repository.worktribe.com/output/1248381

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Copyright Statement
This document is the Accepted Manuscript version of a Published Work that appeared in final form in The Journal of Physical Chemistry A, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acs.jpca.1c01260





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