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  Computational NMR coupling constants: Shifting and scaling factors for evaluating 1JCH

San Fabián, J., García de la Vega, J. M., Suardíaz, R., Fernández-Oliva, M., Pérez, C., Crespo-Otero, R., et al. (2013). Computational NMR coupling constants: Shifting and scaling factors for evaluating 1JCH. Magnetic Resonance in Chemistry, 51(12), 775-787. doi:10.1002/mrc.4014.

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mrc4014-sup-0001-tablesS1-S10_and_figureS2.pdf (Supplementary material), 14MB
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mrc4014-sup-0001-tablesS1-S10_and_figureS2.pdf
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San Fabián, J.1, Author
García de la Vega, J. M.1, Author
Suardíaz, R.2, Author
Fernández-Oliva, M.3, Author
Pérez, C.3, Author
Crespo-Otero, Rachel4, Author           
Contreras, R. H.5, Author
Affiliations:
1Departamento de Química Física Aplicada, Facultad de Ciencias, Universidad Autónoma de Madrid, 28049 Madrid, Spain, ou_persistent22              
2Department de Química and Institut de Biotecnologia i de Biomedicina (IBB), Universitat Autónoma de Barcelona, 08193 Bellaterra, Barcelona, Spain, ou_persistent22              
3Departamento de Química Física, Facultad de Química, Universidad de la Habana, La Habana 10400, Cuba, ou_persistent22              
4Research Group Barbatti, Max-Planck-Institut für Kohlenforschung, Max Planck Society, ou_1445594              
5Departamento de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires and IFIBA-CONICET, Buenos Aires, Argentina, ou_persistent22              

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Free keywords: density functional; NMR spectroscopy; coupling constants; basis sets
 Abstract: Optimized shifting and/or scaling factors for calculating one-bond carbon–hydrogen spin–spin coupling constants have been determined for 35 combinations of representative functionals (PBE, B3LYP, B3P86, B97-2 and M06-L) and basis sets (TZVP, HIII-su3, EPR-III, aug-cc-pVTZ-J, ccJ-pVDZ, ccJ-pVTZ, ccJ-pVQZ, pcJ-2 and pcJ-3) using 68 organic molecular systems with 88 1JCH couplings including different types of hybridized carbon atoms. Density functional theory assessment for the determination of 1JCH coupling constants is examined, comparing the computed and experimental values. The use of shifting constants for obtaining the calculated coupling improves substantially the results, and most models become qualitatively similar. Thus, for the whole set of couplings and for all approaches excluding those using the M06 functional, the root-mean-square deviations lie between 4.7 and 16.4 Hz and are reduced to 4–6.5 Hz when shifting constants are considered. Alternatively, when a specific rovibrational contribution of 5 Hz is subtracted from the experimental values, good results are obtained with PBE, B3P86 and B97-2 functionals in combination with HIII-su3, aug-cc-pVTZ-J and pcJ-2 basis sets.

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Language(s): eng - English
 Dates: 2013-08-282013-07-012013-09-022013-10-102013-12
 Publication Status: Issued
 Pages: 13
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: DOI: 10.1002/mrc.4014
 Degree: -

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Title: Magnetic Resonance in Chemistry
  Abbreviation : Magn. Reson. Chem.
Source Genre: Journal
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Publ. Info: Hoboken, N.Y., USA : John Wiley & Sons
Pages: 13 Volume / Issue: 51 (12) Sequence Number: - Start / End Page: 775 - 787 Identifier: ISSN: 0749-1581
CoNE: https://pure.mpg.de/cone/journals/resource/954928503544