Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes

The principle of linear free energy relationships was applied to the 1H chemical shifts of the b-vinyl proton atoms of 3-methylene-2-substituted-1,4-pentadienes. The correlations of the proton chemical shifts with Swain and Lupton substituent parameters provide a mutually consistent picture of the e...

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Main Authors: GORDANA S. USCUMLIC, NATASA V. VALENTIC
Format: Article
Language:English
Published: Serbian Chemical Society 2003-07-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.shd.org.yu/HtDocs/SHD/Vol68/No7/V68-No7-02.pdf
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spelling doaj-359ba98a2ed649a093469b88791696292020-11-24T23:02:00ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51392003-07-01687525534Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienesGORDANA S. USCUMLICNATASA V. VALENTICThe principle of linear free energy relationships was applied to the 1H chemical shifts of the b-vinyl proton atoms of 3-methylene-2-substituted-1,4-pentadienes. The correlations of the proton chemical shifts with Swain and Lupton substituent parameters provide a mutually consistent picture of the electronic effects in these compounds. The overall pattern of proton chemical shifts can be largely accounted for by a model of substituent effects based on field, resonance and p polarization effects. Owing to the particular geometric arrangement of the vinyl group in 3-methylene-2-substituted-1,4-pentadienes, the b-vinyl protons HB and HC have different sensitivities to polar and resonance effects. The different sensitivities of the 1H chemical shifts to resonance effects reveals some effects not predicted by the model outlined above. Evidence is presented that demonstrates that both the 1H and 13C chemical shifts for these compounds reflect their ground-state charge densities.http://www.shd.org.yu/HtDocs/SHD/Vol68/No7/V68-No7-02.pdfcross-conjugated trienesring substituted a-(s-cis-2-butadienyl)styrenesb-vinyl proton chemical shiftssubstituent effects
collection DOAJ
language English
format Article
sources DOAJ
author GORDANA S. USCUMLIC
NATASA V. VALENTIC
spellingShingle GORDANA S. USCUMLIC
NATASA V. VALENTIC
Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
Journal of the Serbian Chemical Society
cross-conjugated trienes
ring substituted a-(s-cis-2-butadienyl)styrenes
b-vinyl proton chemical shifts
substituent effects
author_facet GORDANA S. USCUMLIC
NATASA V. VALENTIC
author_sort GORDANA S. USCUMLIC
title Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
title_short Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
title_full Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
title_fullStr Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
title_full_unstemmed Effect of substituents on the 1H-NMR chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
title_sort effect of substituents on the 1h-nmr chemical shifts of 3-methylene-2-substituted-1,4-pentadienes
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
publishDate 2003-07-01
description The principle of linear free energy relationships was applied to the 1H chemical shifts of the b-vinyl proton atoms of 3-methylene-2-substituted-1,4-pentadienes. The correlations of the proton chemical shifts with Swain and Lupton substituent parameters provide a mutually consistent picture of the electronic effects in these compounds. The overall pattern of proton chemical shifts can be largely accounted for by a model of substituent effects based on field, resonance and p polarization effects. Owing to the particular geometric arrangement of the vinyl group in 3-methylene-2-substituted-1,4-pentadienes, the b-vinyl protons HB and HC have different sensitivities to polar and resonance effects. The different sensitivities of the 1H chemical shifts to resonance effects reveals some effects not predicted by the model outlined above. Evidence is presented that demonstrates that both the 1H and 13C chemical shifts for these compounds reflect their ground-state charge densities.
topic cross-conjugated trienes
ring substituted a-(s-cis-2-butadienyl)styrenes
b-vinyl proton chemical shifts
substituent effects
url http://www.shd.org.yu/HtDocs/SHD/Vol68/No7/V68-No7-02.pdf
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