Issue 41, 2019

Enhancing the utility of 1JCH coupling constants in structural studies through optimized DFT analysis

Abstract

Commonly used DFT methods for the calculation of 1JCH coupling constants have typically required the application of ad hoc correction factors, modification of functionals, or empirical scaling to improve the fit between predicted and experimental values. Here we demonstrate that highly accurate 1JCH coupling predictions can be obtained without such adjustments by careful selection of DFT methods for geometry optimization and J-coupling calculations (e.g. B3LYP/6-31G(d,p)(mixed)//mPW1PW/cc-pVTZ). The proposed method was cross-validated against a diverse set of 122 1JCH couplings and was successfully applied to the conformational and stereochemical analysis of strychnine and a previously unreported trachylobane diterpene natural product.

Graphical abstract: Enhancing the utility of 1JCH coupling constants in structural studies through optimized DFT analysis

Supplementary files

Article information

Article type
Communication
Submitted
29 Mar 2019
Accepted
18 Apr 2019
First published
18 Apr 2019

Chem. Commun., 2019,55, 5781-5784

Enhancing the utility of 1JCH coupling constants in structural studies through optimized DFT analysis

A. V. Buevich, J. Saurí, T. Parella, N. De Tommasi, G. Bifulco, R. T. Williamson and G. E. Martin, Chem. Commun., 2019, 55, 5781 DOI: 10.1039/C9CC02469G

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