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Dichlorotitanium TADDOLate

Romo et al. have used Lewis acids to catalyze the formation of a-silyl-/ -lactones in their synthesis of potential inhibitors of yeast 3-hydroxy-3-methyl glutaryl-coenzyme A (HMG-CoA) synthase <1998BMC1255>. In addition to various Lewis acid catalysts, a chiral promoter based on the chiral diol (l/ ,2R)-2-[(diphenyl)hydroxymethyl]cyclo-hexan-l-ol was introduced to the reaction in an attempt to improve the stereoselectivity. A variety of chiral 2-oxetanones were formed, with enantioselectivities ranging from 22% to 85%. Dichlorotitanium-TADDOL catalysts 113 and 114 have also been used in an attempt to encourage the stereoselective [2+2] cycloaddition of silyl ketenes and aldehydes (TADDOL = (—)-/ra r-4,5-bis(diphenyl-hydroxymethyl)-2,2-dimethyl-l,3-dioxolane), although this method only afforded 2-oxetanones in moderate yields and optical purity (Equation 41) <1998TL2877>. [Pg.350]

Nitrone cycloaddition reactions promoted by dichlorotitanium TADDOLate can be improved by using A(-(2-alkenyl)succinimides as the dipolarophiles. Regioselective and enantioselective formation of cyclopentenecarboxylic esters is observed using 8 to catalyze the [3+2]cycloaddition of 2,3-butadienoates with electron-deficient alkenes. ... [Pg.89]

TADDOLates (lb) and (le) are prepared from (2) and Dichlorotitanium Diisopropoxide, without removal of the i-PrOH formed (eq 2). They are typically used in the presence of 4 Xmolecular sieves. ... [Pg.289]

The monoacetonide (5) of the tetraphenyltetraol (Seebach s TADDOL) derived from tartaric acid has been used to modify many Lewis acids. For example, the dichlorotitanium dialkoxide is able to catalyze asymmetric cycloadditions between nitrones and alkenes. [Pg.89]


See other pages where Dichlorotitanium TADDOLate is mentioned: [Pg.879]   
See also in sourсe #XX -- [ Pg.89 ]




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