Origin of Fluorine/Sulfur Gauche Effect of β-Fluorinated Thiol, Sulfoxide, Sulfone, and Thionium Ion.

J Org Chem

Faculty of Chemistry, University of Belgrade, Studentski trg 12-16, P.O. Box 158, 11000 Belgrade, Serbia.

Published: October 2015

AI Article Synopsis

  • The gauche preference in FCCX systems, which involves an electronegative element X from Period 2, is crucial in various fields like synthetic and medicinal chemistry and is explained by hyperconjugation and electrostatic interactions.
  • A recent study indicated that this gauche effect also applies to Period 3 elements, such as sulfur, prompting this investigation into the conformational behavior of FCCS systems.
  • The research utilized ab initio and DFT calculations across seven compound classes, revealing that the gauche effect in fluorine/sulfur systems relies heavily on electrostatic interactions (63-75%), with orbital interactions contributing 22-41%, and highlighting the importance of stereoelectronic effects.

Article Abstract

The well-known gauche preference in FCCX systems, where X is an electronegative element from Period 2, is widely exploited in synthetic, medicinal, and material chemistry. It is rationalized on the basis of σ(C-H) → σ*(C-F) hyperconjugation and electrostatic interactions. The recent report (Thiehoff, C.; et al. Chem. Sci. 2015, 6, 3565) showed that the fluorine gauche effect can extend to Period 3 elements, such as sulfur. The aim of the present work is to disclose factors governing conformational behavior of FCCS containing systems. We examine conformational preferences in seven classes of compounds by ab initio and DFT calculations and rationalize the results by quantitatively decomposing the anti/gauche isomerization energy into contributions from electrostatic, orbital, dispersion, and Pauli interactions, and energy spent on structural changes. The results show that the fluorine/sulfur gauche effect is primarily electrostatic (63-75%), while all orbital interactions contribute 22-41% to stabilizing interactions. Stereoelectronic effects, involved in orbital interactions, also play a role in gauche conformer stabilization.

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Source
http://dx.doi.org/10.1021/acs.joc.5b01779DOI Listing

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Article Synopsis
  • The gauche preference in FCCX systems, which involves an electronegative element X from Period 2, is crucial in various fields like synthetic and medicinal chemistry and is explained by hyperconjugation and electrostatic interactions.
  • A recent study indicated that this gauche effect also applies to Period 3 elements, such as sulfur, prompting this investigation into the conformational behavior of FCCS systems.
  • The research utilized ab initio and DFT calculations across seven compound classes, revealing that the gauche effect in fluorine/sulfur systems relies heavily on electrostatic interactions (63-75%), with orbital interactions contributing 22-41%, and highlighting the importance of stereoelectronic effects.
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