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Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies

[Image: see text] Although there are some published conclusions in the literature concerning the origin of the axial-conformation preference in 3-fluoropiperidinium cations (charge–dipole orientation effect), the origin of the axial-conformation preferences in the 3-halopiperidinium cations [halogen...

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Autores principales: Khani, Farnousha, Atabaki, Hooshang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7528170/
https://www.ncbi.nlm.nih.gov/pubmed/33015447
http://dx.doi.org/10.1021/acsomega.0c02506
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author Khani, Farnousha
Atabaki, Hooshang
author_facet Khani, Farnousha
Atabaki, Hooshang
author_sort Khani, Farnousha
collection PubMed
description [Image: see text] Although there are some published conclusions in the literature concerning the origin of the axial-conformation preference in 3-fluoropiperidinium cations (charge–dipole orientation effect), the origin of the axial-conformation preferences in the 3-halopiperidinium cations [halogen = F (1), Cl (2), Br (3)] has remained an open question. To explore the origin of the axial-conformation preferences in compounds 1–3, we assessed the roles and contributions of the hyperconjugative interactions, the Coulombic electrostatic interactions, the electrostatic model associated with dipole–dipole interactions, and the steric effects associated with the Pauli exchange-type repulsions on the conformational properties of compounds 1–3 utilizing the G3MP2, LC-ωPBE, and B3LYP methods and natural bond orbital (NBO) interpretations. Natural Coulombic potential energies are in favor of the axial conformations of compounds 1–3, and justify their corresponding total energy differences. The through-space hyperconjugative interactions between the donor lone pairs of halogen atoms (LP(3)X) and the acceptor antibonding orbitals of H–N bonds [σ*((H–N))(⊕)], LP(3)X → σ*((H–N))(⊕), increase from compound 1 to compound 3. The inspection of the dipole moments of the parallel C–X and H–N bonds in the axial conformations of compounds 1–3 revealed that the variations of their corresponding four-center dipole–dipole interactions correlate well with their corresponding conformational behaviors. The steric effects associated with the Pauli exchange-type repulsions are strongly in favor of the equatorial conformations of compounds 1–3. Accordingly, the charge–dipole orienting effect associated with the four-center dipole–dipole interactions is a dominant factor in the conformational behaviors of compounds 1–3.
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spelling pubmed-75281702020-10-02 Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies Khani, Farnousha Atabaki, Hooshang ACS Omega [Image: see text] Although there are some published conclusions in the literature concerning the origin of the axial-conformation preference in 3-fluoropiperidinium cations (charge–dipole orientation effect), the origin of the axial-conformation preferences in the 3-halopiperidinium cations [halogen = F (1), Cl (2), Br (3)] has remained an open question. To explore the origin of the axial-conformation preferences in compounds 1–3, we assessed the roles and contributions of the hyperconjugative interactions, the Coulombic electrostatic interactions, the electrostatic model associated with dipole–dipole interactions, and the steric effects associated with the Pauli exchange-type repulsions on the conformational properties of compounds 1–3 utilizing the G3MP2, LC-ωPBE, and B3LYP methods and natural bond orbital (NBO) interpretations. Natural Coulombic potential energies are in favor of the axial conformations of compounds 1–3, and justify their corresponding total energy differences. The through-space hyperconjugative interactions between the donor lone pairs of halogen atoms (LP(3)X) and the acceptor antibonding orbitals of H–N bonds [σ*((H–N))(⊕)], LP(3)X → σ*((H–N))(⊕), increase from compound 1 to compound 3. The inspection of the dipole moments of the parallel C–X and H–N bonds in the axial conformations of compounds 1–3 revealed that the variations of their corresponding four-center dipole–dipole interactions correlate well with their corresponding conformational behaviors. The steric effects associated with the Pauli exchange-type repulsions are strongly in favor of the equatorial conformations of compounds 1–3. Accordingly, the charge–dipole orienting effect associated with the four-center dipole–dipole interactions is a dominant factor in the conformational behaviors of compounds 1–3. American Chemical Society 2020-09-18 /pmc/articles/PMC7528170/ /pubmed/33015447 http://dx.doi.org/10.1021/acsomega.0c02506 Text en This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Khani, Farnousha
Atabaki, Hooshang
Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title_full Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title_fullStr Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title_full_unstemmed Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title_short Exploring the Origin of the Axial-Conformation Preferences in the 3-Halopiperidinium Cations: the Importance of the Coulombic Potential Energies
title_sort exploring the origin of the axial-conformation preferences in the 3-halopiperidinium cations: the importance of the coulombic potential energies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7528170/
https://www.ncbi.nlm.nih.gov/pubmed/33015447
http://dx.doi.org/10.1021/acsomega.0c02506
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