4.7 Article

Performance of an Optimally Tuned Range-Separated Hybrid Functional for 0-0 Electronic Excitation Energies

期刊

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
卷 10, 期 4, 页码 1677-1685

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ct5000617

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资金

  1. European Research Council (ERC)
  2. Region des Pays de la Loire [Marches-278845]
  3. National Science Foundation [CHE-0952253, CHE-1265833]
  4. Division Of Chemistry
  5. Direct For Mathematical & Physical Scien [0952253, 1265833] Funding Source: National Science Foundation

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Using a set of 40 conjugated molecules, we assess the performance of an optimally tuned range-separated hybrid functional in reproducing the experimental 0-0 energies. The selected protocol accounts for the impact of solvation using a corrected linear-response continuum approach and vibrational corrections through calculations of the zero-point energies of both ground and excited-states and provides basis set converged data thanks to the systematic use of diffuse-containing atomic basis sets at all computational steps. It turns out that an optimally tuned long-range corrected hybrid form of the Perdew-Burke-Ernzerhof functional, LC-PBE*, delivers both the smallest mean absolute error (0.20 eV) and standard deviation (0.15 eV) of all tested approaches, while the obtained correlation (0.93) is large but remains slightly smaller than its M06-2X counterpart (0.95). In addition, the efficiency of two other recently developed exchange-correlation functionals, namely SOGGA11-X and omega B97X-D, has been determined in order to allow more complete comparisons with previously published data.

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