Spin Orbit Coupling in Orthogonal Charge Transfer States: (TD-)DFT of Pyrene-Dimethylaniline

Open Access
Authors
Publication date 02-2022
Journal Molecules
Article number 891
Volume | Issue number 27 | 3
Number of pages 23
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract

The conformational dependence of the matrix element for spin–orbit coupling and of the electronic coupling for charge separation are determined for an electron donor–acceptor system containing a pyrene acceptor and a dimethylaniline donor. Different kinetic and energetic aspects that play a role in the spin–orbit charge transfer intersystem crossing (SOCT-ISC) mechanism are discussed. This includes parameters related to initial charge separation and the charge recombination pathways using the Classical Marcus Theory of electron transfer. The spin–orbit coupling, which plays a significant role in charge recombination to the triplet state, can be probed by (TD)-DFT, using the latter as a tool to understand and predict the SOCT-ISC mechanism. The matrix elements for spin–orbit coupling for acetone and 4-thio-thymine are used for benchmarking. (Time Dependent-) Density Functional Theory (DFT and TD-DFT) calculations are applied using the quantum chemical program Amsterdam Density Functional (ADF).

Document type Article
Note In special issue Advances in the Theoretical and Computational Chemistry.
Language English
Related dataset 22-Marcus-Mathematica-TESTDATA-Assignments SOCT-ISC-PyrDMA-input
Published at https://doi.org/10.3390/molecules27030891
Other links https://www.scopus.com/pages/publications/85123737529
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molecules-27-00891-v2 (Final published version)
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