Quantum-chemical calculations of NMR chemical shifts of organic molecules: XII. Calculation of the 13C NMR chemical shifts of fluoromethanes at the DFT level
С. В. Федоров, Yury Yu. Rusakov, Leonid B. Krivdin
Abstract
С. В. Федоров, Yury Yu. Rusakov, Leonid B. Krivdin
Abstract
Calculation was carried out of chemical shifts in 13C NMR spectra for a series of fluoromethanes CH n F4−n (n = 0–4) by the methods of the electron density functional theory GIAO-DFT taking in consideration the solvent effect in the framework of the polarizable continuum model Tomasi IEF-PCM. The best results were obtained at the use of Keal-Tozer KT3 functional combined with Pople standard basis sets 6-311G(d,p) and 6-311++G(d,p), and also with Jensen special set pcS-2 containing tight p-functions. The optimum reference in the calculation of chemical shifts in 13C NMR spectra for the fluoromethanes series is TMS.
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Calculation was carried out of chemical shifts in 13C NMR spectra for a series of fluoromethanes CH n F4−n (n = 0–4) by the methods of the electron density functional theory GIAO-DFT taking in consideration the solvent effect in the framework of the polarizable continuum model Tomasi IEF-PCM. The best results were obtained at the use of Keal-Tozer KT3 functional combined with Pople standard basis sets 6-311G(d,p) and 6-311++G(d,p), and also with Jensen special set pcS-2 containing tight p-functions. The optimum reference in the calculation of chemical shifts in 13C NMR spectra for the fluoromethanes series is TMS.
Key concepts: Chemical shift, Chemistry, Polarizable continuum model, Carbon-13 NMR, Computational chemistry, Density functional theory, Basis set, Molecule