Journal of Chemical Theory and Computation · 2014 · 52 citations · 61 references
EngineeringFull Carotenoid PeridininExcitation Energy TransferComputational ChemistryChemistryElectronic Excited StateBond Length AlternationCarotenoidPhotosynthesisBright ExcitationPhotophysical PropertyAb Initio GeometryBiophysicsPhysicsBiochemistryQuantum Monte CarloPhysical ChemistryQuantum ChemistryAb-initio MethodExcited State PropertyNatural SciencesVariational Monte Carlo
In this letter, we report the singlet ground state structure of the full carotenoid peridinin by means of variational Monte Carlo (VMC) calculations. The VMC relaxed geometry has an average bond length alternation of 0.1165(10) Å, larger than the values obtained by DFT (PBE, B3LYP, and CAM-B3LYP) and shorter than that calculated at the Hartree-Fock (HF) level. TDDFT and EOM-CCSD calculations on a reduced peridinin model confirm the HOMO-LUMO major contribution of the Bu(+)-like (S2) bright excited state. Many Body Green's Function Theory (MBGFT) calculations of the vertical excitation energy of the Bu(+)-like state for the VMC structure (VMC/MBGFT) provide an excitation energy of 2.62 eV, in agreement with experimental results in n-hexane (2.72 eV). The dependence of the excitation energy on the bond length alternation in the MBGFT and TDDFT calculations with different functionals is discussed.
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Mark E. Casida, Christine Jamorski, Kim C. Casida et al. · The Journal of Chemical Physics · 1998 · 4.9K citations
John F. Stanton, Rodney J. Bartlett · The Journal of Chemical Physics · 1993 · 2.6K citations
Localized Excited State, Engineering, Computational Chemistry +18