TY - JOUR
T1 - Conformational Analysis of 1,3-Difluorinated Alkanes
AU - Poole, William G.
AU - Peron, Florent
AU - Fox, Stephen J.
AU - Wells, Neil
AU - Skylaris, Chris Kriton
AU - Essex, Jonathan W.
AU - Kuprov, Ilya
AU - Linclau, Bruno
N1 - Publisher Copyright: © 2024 The Authors. Published by American Chemical Society.
PY - 2024/6/21
Y1 - 2024/6/21
N2 - Fluorine substitution can have a profound impact on molecular conformation. Here, we present a detailed conformational analysis of how the 1,3-difluoropropylene motif (-CHF-CH2-CHF-) determines the conformational profiles of 1,3-difluoropropane, anti- and syn-2,4-difluoropentane, and anti- and syn-3,5-difluoroheptane. It is shown that the 1,3-difluoropropylene motif strongly influences alkane chain conformation, with a significant dependence on the polarity of the medium. The conformational effect of 1,3-fluorination is magnified upon chain extension, which contrasts with vicinal difluorination. Experimental evidence was obtained from NMR analysis, where polynomial complexity scaling simulation algorithms were necessary to enable J-coupling extraction from the strong second-order spectra, particularly for the large 16-spin systems of the difluorinated heptanes. These results improve our understanding of the conformational control toolkit for aliphatic chains, yield simple rules for conformation population analysis, and demonstrate quantum mechanical time-domain NMR simulations for liquid state systems with large numbers of strongly coupled spins.
AB - Fluorine substitution can have a profound impact on molecular conformation. Here, we present a detailed conformational analysis of how the 1,3-difluoropropylene motif (-CHF-CH2-CHF-) determines the conformational profiles of 1,3-difluoropropane, anti- and syn-2,4-difluoropentane, and anti- and syn-3,5-difluoroheptane. It is shown that the 1,3-difluoropropylene motif strongly influences alkane chain conformation, with a significant dependence on the polarity of the medium. The conformational effect of 1,3-fluorination is magnified upon chain extension, which contrasts with vicinal difluorination. Experimental evidence was obtained from NMR analysis, where polynomial complexity scaling simulation algorithms were necessary to enable J-coupling extraction from the strong second-order spectra, particularly for the large 16-spin systems of the difluorinated heptanes. These results improve our understanding of the conformational control toolkit for aliphatic chains, yield simple rules for conformation population analysis, and demonstrate quantum mechanical time-domain NMR simulations for liquid state systems with large numbers of strongly coupled spins.
UR - http://www.scopus.com/inward/record.url?scp=85194922428&partnerID=8YFLogxK
U2 - 10.1021/acs.joc.4c00670
DO - 10.1021/acs.joc.4c00670
M3 - مقالة
SN - 0022-3263
VL - 89
SP - 8789
EP - 8803
JO - Journal of Organic Chemistry
JF - Journal of Organic Chemistry
IS - 12
ER -