Bw. Gung et Ma. Wolf, CONFORMATIONAL STUDY OF CHIRAL ALKENES - THE INFLUENCE OF PROTECTIVE GROUPS ON THE RELATIVE STABILITY OF GROUND-STATE ROTATIONAL ISOMERS, Journal of organic chemistry, 58(25), 1993, pp. 7038-7044
A variable temperature NMR study shows that a protective group on the
hydroxy function of a chiral allylic alcohol can either enhance or cou
nter the influence of the vinyl substituent on the ground-state (GS) c
onformations. If the allylic hydroxy is protected as a methyl ether, t
he CH-eclipsed form I becomes favored to a greater degree for normal c
hiral alkenes. Furthermore, conformer I becomes preferred even for the
gamma-hydroxy-alpha,beta-unsaturated esters, which normally favor the
CO-eclipsed form (II). On the other hand, the tert-butyldimethylsilyl
(TBDMS) ether enhances the preference for conformer II for the gamma-
hydroxy-alpha,beta-unsaturated esters and diminishes the preference fo
r the CH-eclipsed form of normal chiral alkenes. These facts are expla
ined by the size of the allylic oxygen lone pairs.