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Nonadiabatic excited-state dynamics of ReCl(CO)3(bpy) in two different solvents.
Srut, Adam; Mai, Sebastian; Sazanovich, Igor V; Heyda, Jan; Vlcek, Antonín; González, Leticia; Zális, Stanislav.
Afiliação
  • Srut A; J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, 182 23 Prague, Czech Republic. stanislav.zalis@jh-inst.cas.cz.
  • Mai S; Department of Physical Chemistry, University of Chemistry and Technology, Prague, 166 28 Prague, Czech Republic. jan.heyda@vscht.cz.
  • Sazanovich IV; Institute of Theoretical Chemistry, Faculty of Chemistry, University of Vienna, Währinger Straße 17, 1090 Vienna, Austria. leticia.gonzalez@univie.ac.at.
  • Heyda J; Central Laser Facility, Research Complex at Harwell, STFC, Rutherford Appleton Laboratory, Harwell Oxford, Didcot, Oxfordshire, OX11 0QX, UK.
  • Vlcek A; J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, 182 23 Prague, Czech Republic. stanislav.zalis@jh-inst.cas.cz.
  • González L; Department of Physical Chemistry, University of Chemistry and Technology, Prague, 166 28 Prague, Czech Republic. jan.heyda@vscht.cz.
  • Zális S; J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, 182 23 Prague, Czech Republic. stanislav.zalis@jh-inst.cas.cz.
Phys Chem Chem Phys ; 24(42): 25864-25877, 2022 Nov 02.
Article em En | MEDLINE | ID: mdl-36279148
ABSTRACT
We present a study of excited-states relaxation of the complex ReCl(CO)3(bpy) (bpy = 2,2-bipyridine) using a nonadiabatic TD-DFT dynamics on spin-mixed potential energy surfaces in explicit acetonitrile (ACN) and dimethylsulfoxide (DMSO) solutions up to 800 fs. ReCl(CO)3(bpy) belongs to a group of important photosensitizers which show ultrafast biexponential subpicosecond fluorescence decay kinetics. The choice of solvents was motivated by the different excited-state relaxation dynamics observed in subpicosecond time-resolved IR (TRIR) experiments. Simulations of intersystem crossing (ISC) showed the development of spin-mixed states in both solvents. Transformation of time-dependent populations of spin-mixed states enabled to monitor the temporal evolution of individual singlet and triplet states, fitting of bi-exponential decay kinetics, and simulating the time-resolved fluorescence spectra that show only minor differences between the two solvents. Analysis of structural relaxation and solvent reorganization employing time-resolved proximal distribution functions pointed to the factors influencing the fluorescence decay time constants. Nonadiabatic dynamics simulations of time-evolution of electronic, molecular, and solvent structures emerge as a powerful technique to interpret time-resolved spectroscopic data and ultrafast photochemical reactivity.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Phys Chem Chem Phys Ano de publicação: 2022 Tipo de documento: Article