A benefit of using the IDSCRF- over UFF-radii cavities and why joint correlations of NMR chemical shifts can be advantageous: Condensed pyridines as an IEF-PCM/GIAO/DFT case study - Université de Pau et des Pays de l'Adour Accéder directement au contenu
Article Dans Une Revue Journal of Physical Chemistry A Année : 2016

A benefit of using the IDSCRF- over UFF-radii cavities and why joint correlations of NMR chemical shifts can be advantageous: Condensed pyridines as an IEF-PCM/GIAO/DFT case study

Résumé

Herein, an advantage of the use of IDSCRFover UFF-radii-based solute cavities in GIAO/DFT calculations is presented for the 13C and especially 15N NMR chemical shifts made for several bicyclic aromatic nitrogen heterocycles in CDCl3 solution treated within the classical IEF-PCM solvation scheme. Successful application of the IDSCRF-radii in the non 1:1 joint multinuclear 1H/13C and particularly 1H/13C/15N correlations of the measured δH,C(,N) values to those obtained theoretically is also documented for a series of test systems (-268 ≤ δN ≤ -72 ppm). The experimentally yet unknown δN's were found in this way for the title compounds via a trinuclear eq 1 determined for an optimally chosen value of the multiplication factor of initial raw δH data (mH = 10). Such a simultaneous analysis of the δH,C(,N) data is proposed as a novel method to study the solution structure of the other similar conformationally homogeneous (bio)organic compounds. The issue of small spurious imaginary vibrational frequencies computed for a few molecular systems using the Gaussian 09 default UFF-radii is briefly considered as well. (Graph Presented). © 2016 American Chemical Society.
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Dates et versions

hal-01566320 , version 1 (20-07-2017)

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R.B. Nazarski, K. Justyna, S. Leśniak, Anna Chrostowska. A benefit of using the IDSCRF- over UFF-radii cavities and why joint correlations of NMR chemical shifts can be advantageous: Condensed pyridines as an IEF-PCM/GIAO/DFT case study. Journal of Physical Chemistry A, 2016, 120 (48), pp.9519--9528. ⟨10.1021/acs.jpca.6b10457⟩. ⟨hal-01566320⟩
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