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Synthesis and structural elucidation of a phthalide analog using NMR analysis and DFT calculations

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Phtalides are secondary metabolites found in several fungi with a wide range of biological activities. A novel phthalide analog was synthesized by Diels–Alder reaction between cyclopentadiene and 3,4‐dichlorofuran‐2(5H)‐one. Quantum mechanical… Click to show full abstract

Phtalides are secondary metabolites found in several fungi with a wide range of biological activities. A novel phthalide analog was synthesized by Diels–Alder reaction between cyclopentadiene and 3,4‐dichlorofuran‐2(5H)‐one. Quantum mechanical calculations were used in conjunction with the spectrometric methods to determine the structure of the title compound. The calculated NMR chemical shifts for eight candidate pairs of enantiomers were compared with the experimental NMR chemical shifts applying the DP4 probability and mean absolute errors methodology. DP4 analysis using 1H and 13C NMR chemical shifts without assignment of the signals presented 100% probability for the correct candidate structure 3d, proving the consistency of the method even without spectra interpretation. Results from theoretical calculation and NMR spectra interpretation were in agreement to the structure of rac‐(3aR,4S,4aS,5R,8S,8aR,9R,9aS)‐3a,9a‐dichloro‐3a,4,4a,5,8,8a,9,9a‐octahydro‐4,9:5,8‐dimethanonaphtho[2,3‐c]furan‐1(3H)‐one.

Keywords: chemical shifts; nmr chemical; synthesis structural; analysis; phthalide analog; structural elucidation

Journal Title: Magnetic Resonance in Chemistry
Year Published: 2019

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