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1.
J Org Chem ; 87(5): 3042-3065, 2022 03 04.
Article in English | MEDLINE | ID: mdl-35167300

ABSTRACT

The addition of the highly reactive reagent allylmagnesium halide to α-substituted acyclic chiral ketones proceeded with high stereoselectivity. The stereoselectivity cannot be analyzed by conventional stereochemical models because these reactions do not conform to the requirements of those models. Instead, the stereoselectivity arises from the approach of the nucleophile to the most accessible diastereofaces of the lowest-energy conformations of the ketones. High stereoselectivity is expected, and the stereochemical outcome can be predicted, with conformationally biased ketones that have sterically distinguishable diastereofaces wherein only one face is accessible for nucleophilic addition. The conformations of the ketones can be determined by a combination of computational modeling and, in some cases, structure determination by X-ray crystallography.


Subject(s)
Ketones , Indicators and Reagents , Ketones/chemistry , Molecular Conformation , Stereoisomerism
2.
J Org Chem ; 86(10): 7203-7217, 2021 05 21.
Article in English | MEDLINE | ID: mdl-33978419

ABSTRACT

The stereoselectivities of reactions of allylmagnesium reagents with chiral ketones cannot be easily explained by stereochemical models. Competition experiments indicate that the complexation step is not reversible, so nucleophiles cannot access the widest range of possible encounter complexes and therefore cannot be analyzed easily using available models. Nevertheless, additions of allylmagnesium reagents to a ketone can still be stereoselective provided that the carbonyl group adopts a conformation that leads to one face being completely blocked from the approach of the allylmagnesium reagent.


Subject(s)
Ketones , Indicators and Reagents , Stereoisomerism
3.
Chem Rev ; 120(3): 1513-1619, 2020 02 12.
Article in English | MEDLINE | ID: mdl-31904936

ABSTRACT

This review describes the additions of allylmagnesium reagents to carbonyl compounds and to imines, focusing on the differences in reactivity between allylmagnesium halides and other Grignard reagents. In many cases, allylmagnesium reagents either react with low stereoselectivity when other Grignard reagents react with high selectivity, or allylmagnesium reagents react with the opposite stereoselectivity. This review collects hundreds of examples, discusses the origins of stereoselectivities or the lack of stereoselectivity, and evaluates why selectivity may not occur and when it will likely occur.


Subject(s)
Alcohols/chemical synthesis , Aldehydes/chemistry , Allyl Compounds/chemistry , Ketones/chemistry , Magnesium/chemistry , Organometallic Compounds/chemistry , Stereoisomerism
4.
Inorganica Chim Acta ; 468: 28-37, 2017 Nov 01.
Article in English | MEDLINE | ID: mdl-29158607

ABSTRACT

The enantioselective synthesis of polypropionates continues to be an attractive realm for the synthetic chemists mostly due to the challenges presented by the number of consecutive stereogenic centers contained within the aliphatic chain. Over the years, our laboratory has developed an epoxide-based three-step reiterative methodology for the construction of these targets, with the ultimate goal that the approach could be extended to the synthesis of polypropionate-containing natural products. The key steps include the diastereoselective epoxidation of allylic and homoallylic alcohols, and the regioselective cleavage of 2-methyl-3,4-epoxy alcohols. The choice of the organometallic reagent, and the cis/trans geometry of the chiral epoxide can be used to control both the relative and absolute configuration of the resulting propionate unit, allowing our approach to be applied in the synthesis of advanced fragments. Additionally, the combination of our first- and second-generation methodologies permits the incorporation of different variations at the methyl moiety.

5.
Org Lett ; 16(14): 3684-7, 2014 Jul 18.
Article in English | MEDLINE | ID: mdl-24991982

ABSTRACT

The selectivities of nucleophilic substitution reactions of tetrahydropyran acetals promoted by trimethylsilyl trifluoromethanesulfonate depend upon the reaction solvent. Polar solvents favor the formation of S(N)1 products, while nonpolar solvents favor S(N)2 products. Trichloroethylene was identified as the solvent most likely to give S(N)2 products in both C- and O-glycosylation reactions.


Subject(s)
Acetals/chemistry , Mesylates/chemistry , Solvents/chemistry , Trichloroethylene/chemistry , Trimethylsilyl Compounds/chemistry , Glycosylation , Molecular Structure , Stereoisomerism
6.
Tetrahedron Lett ; 53(17): 2199-2201, 2012 Apr 25.
Article in English | MEDLINE | ID: mdl-22500058

ABSTRACT

An efficient non-aldol convergent synthesis of the C14-C25 polyketide fragment of bafilomycin A(1) was completed in 16% overall yield and 8 steps in its longest linear sequence. This synthesis highlights the formation of the key fragments using a three-step sequence of epoxide cleavage, alkyne reduction, and epoxidation developed in our laboratory; starting from suitably protected enantiomeric epoxides of trans-2,3-epoxybutanol. This chemistry represents a quick asymmetric and diastereoselective construction of the polyketide chain of bafilomycin A(1), in which every stereogenic center was constructed using solely epoxide chemistry.

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