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This article is cited in 2 scientific papers (total in 2 papers)
Computer science
Comparative analysis of calculation methods in electron spectroscopy
T. A. Andreevaa, M. E. Bedrinaa, D. A. Ovsyannikovb a St. Petersburg State University, 7-9, Universitetskaya nab., St. Petersburg, 199034, Russian Federation
b St. Petersburg State University of industrial technologies and design, 18, Bolshaya Morskaya ul., St. Petersburg, 191186, Russian Federation
Abstract:
The possibilities of the electron density functional method DFT with hybrid functionals B3LYP and M06-HF with various basis sets for calculating the electronic spectra of molecules were analyzed. It was shown that the specific form of the basis sets 6-31G, cc-PVDZ, 6-311 $++$ G ** are not significantly influence on the value of the long-wave transition band in the electronic absorption spectrum of 3,6-diamino-N-methyl phthalimide. The choice of the hybrid potential in the method of the non-stationary theory of the TD-DFT density functional and especially using CIS configuration interaction scheme leads to noticeable differences in the calculated values of the ($\pi-\pi*$)-transition band. For all other transitions, the changes were not so significant. The electronic spectra of ten compounds — substituted phthalimide were calculated by different methods using the 6-31G basis set. The structure of a substance uniquely determines the spectrum pattern. Comparing results of calculations of these compounds by the TD-DFT method and the CIS method, which includes single-excited states, we concluded that the best agreement with the experiment is observed using the CIS method and the 6-31G basis set.
Keywords:
density functional theory, basis functions, TD-DFT, CIS, electronic spectra, phthalimides.
Received: September 9, 2019 Accepted: November 7, 2019
Citation:
T. A. Andreeva, M. E. Bedrina, D. A. Ovsyannikov, “Comparative analysis of calculation methods in electron spectroscopy”, Vestnik S.-Petersburg Univ. Ser. 10. Prikl. Mat. Inform. Prots. Upr., 15:4 (2019), 518–528
Linking options:
https://www.mathnet.ru/eng/vspui425 https://www.mathnet.ru/eng/vspui/v15/i4/p518
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