Ab Initio Study of Phosphorescence of Hetero[8]Circulenes
- Authors: Valiev R.R.1,2, Baryshnikov G.V.1, Cerepanov V.N.1, Sundholm D.3
-
Affiliations:
- National Research Tomsk State University
- National Research Tomsk Polytechnic University
- University of Helsinki
- Issue: Vol 62, No 3 (2019)
- Pages: 406-410
- Section: Article
- URL: https://bakhtiniada.ru/1064-8887/article/view/241647
- DOI: https://doi.org/10.1007/s11182-019-01727-7
- ID: 241647
Cite item
Abstract
Quantum chemical calculations of phosphorescence lifetime are performed for the first time by ab initio CC2 and TD-DFT methods for hetero[8]circulenes bearing Si and Ge atoms. According to the results of calculations, a lower value of τphos for tetragermatetrathia[8]circulene (II) originates from two factors: almost 29 times more distorted main macrocycle II and almost four times larger spin-orbit coupling matrix element between T1 and S0 by virtue of heavier Ge atoms as compared to Si. The τphos values calculated by CC2 ideally agree with its experimental value; the difference is less than 2 and 0.3 s for tetrasilatetrathia[8]circulene (I) and tetragermatetrathia[8]circulene (II) molecules, respectively. The agreement of the lifetimes calculated by TD-DFT is only within an order of magnitude. The main intramolecular decay channel of the T1 state is internal conversion between T1 and S0 owing to simultaneous spin-orbit and nonadiabatic interaction of their wavefunctions.
About the authors
R. R. Valiev
National Research Tomsk State University; National Research Tomsk Polytechnic University
Author for correspondence.
Email: valievrashid@mail.ru
Russian Federation, Tomsk; Tomsk
G. V. Baryshnikov
National Research Tomsk State University
Email: valievrashid@mail.ru
Russian Federation, Tomsk
V. N. Cerepanov
National Research Tomsk State University
Email: valievrashid@mail.ru
Russian Federation, Tomsk
D. Sundholm
University of Helsinki
Email: valievrashid@mail.ru
Finland, Helsinki
Supplementary files
