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      Effective method to compute Franck-Condon integrals for optical spectra of large molecules in solution

      , , , ,
      The Journal of Chemical Physics
      AIP Publishing

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          Toward reliable density functional methods without adjustable parameters: The PBE0 model

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            Assessment of the Perdew–Burke–Ernzerhof exchange-correlation functional

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              A long-range-corrected time-dependent density functional theory.

              We apply the long-range correction (LC) scheme for exchange functionals of density functional theory to time-dependent density functional theory (TDDFT) and examine its efficiency in dealing with the serious problems of TDDFT, i.e., the underestimations of Rydberg excitation energies, oscillator strengths, and charge-transfer excitation energies. By calculating vertical excitation energies of typical molecules, it was found that LC-TDDFT gives accurate excitation energies, within an error of 0.5 eV, and reasonable oscillator strengths, while TDDFT employing a pure functional provides 1.5 eV lower excitation energies and two orders of magnitude lower oscillator strengths for the Rydberg excitations. It was also found that LC-TDDFT clearly reproduces the correct asymptotic behavior of the charge-transfer excitation energy of ethylene-tetrafluoroethylene dimer for the long intramolecular distance, unlike a conventional far-nucleus asymptotic correction scheme. It is, therefore, presumed that poor TDDFT results for pure functionals may be due to their lack of a long-range orbital-orbital interaction. (c) 2004 American Institute of Physics.
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                Author and article information

                Journal
                The Journal of Chemical Physics
                The Journal of Chemical Physics
                AIP Publishing
                0021-9606
                1089-7690
                February 28 2007
                February 28 2007
                : 126
                : 8
                : 084509
                Article
                10.1063/1.2437197
                17343460
                ed3a67a7-56f9-4bd7-b95b-8e13e930adf8
                © 2007
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