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Frenkel‐exciton decomposition analysis of circular dichroism and circularly polarized luminescence for multichromophoric systems
Author(s) -
Shiraogawa Takafumi,
Ehara Masahiro,
Jurinovich Sandro,
Cupellini Lorenzo,
Mennucci Benedetta
Publication year - 2018
Publication title -
journal of computational chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.907
H-Index - 188
eISSN - 1096-987X
pISSN - 0192-8651
DOI - 10.1002/jcc.25169
Subject(s) - exciton , circular dichroism , luminescence , magnetic circular dichroism , physics , molecular physics , chemistry , materials science , optics , crystallography , quantum mechanics , spectral line
Recently, a method to calculate the absorption and circular dichroism (CD) spectra based on the exciton coupling has been developed. In this work, the method was utilized for the decomposition of the CD and circularly polarized luminescence (CPL) spectra of a multichromophoric system into chromophore contributions for recently developed through‐space conjugated oligomers. The method which has been implemented using rotatory strength in the velocity form and therefore it is gauge‐invariant, enables us to evaluate the contribution from each chromophoric unit and locally excited state to the CD and CPL spectra of the total system. The excitonic calculations suitably reproduce the full calculations of the system, as well as the experimental results. We demonstrate that the interactions between electric transition dipole moments of adjacent chromophoric units are crucial in the CD and CPL spectra of the multichromophoric systems, while the interactions between electric and magnetic transition dipole moments are not negligible. © 2018 Wiley Periodicals, Inc.

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