Synthesis and Comprehensive
Structural and Chiroptical
Characterization of Enones Derived from (−)-α-Santonin
by Experiment and Theory
Version 2 2016-05-27, 12:28Version 2 2016-05-27, 12:28
Version 1 2016-05-12, 15:13Version 1 2016-05-12, 15:13
Posted on 2016-04-26 - 00:00
The aim of the present
work is to explain the causes of the observed
deviations from sector and helicity rules to determine the absolute
configuration of optically active α,β-unsaturated ketones
by means of electronic circular dichroism (ECD). To this end, a series
of model compounds with a common decahydronaphthalene
skeleton representing both cisoid and transoid enones were synthesized. In the framework of this work, detailed
dichroic studies supported by single crystal X-ray analysis were performed
where possible. To assist the achievement of the desired objectives
the conformational flexibility of the selected cis-enones through the dependence of solvent and temperature on the
ECD spectra were examined. All experimental studies were supplemented
by detailed DFT calculations. A notable result of the study is assessing
the applicability of the enone sector and helicity rules in dichroic
studies and potential restrictions. To this end, a number of factors
that could determine the signs of the individual Cotton effects has
been considered. Among these nonminimum structure effects, i.e., twisting
of the enone chromophore and nonplanarity of the enone double bond
can be mentioned.
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Masnyk, Marek; Butkiewicz, Aleksandra; Górecki, Marcin; Luboradzki, Roman; Bannwarth, Christoph; Grimme, Stefan; et al. (2016). Synthesis and Comprehensive
Structural and Chiroptical
Characterization of Enones Derived from (−)-α-Santonin
by Experiment and Theory. ACS Publications. Collection. https://doi.org/10.1021/acs.joc.6b00416