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1.
J Org Chem ; 80(2): 965-79, 2015 Jan 16.
Article in English | MEDLINE | ID: mdl-25514602

ABSTRACT

Radical relay cyclizations initiated by alkoxy radicals are a powerful tool for the rapid construction of substituted tetrahydrofurans. The scope of these relay cyclizations has been dramatically increased with the development of two strategies that utilize an oxygen atom in the substrate to accelerate the desired hydrogen atom transfer (HAT) over competing pathways. This has enabled a chemoselective 1,6-HAT over a competing 1,5-HAT. Furthermore, this allows for a chemoselective 1,5-HAT over competing direct cyclizations and ß-fragmentations. Oxygen atom incorporation leads to a general increase in cyclization diastereoselectivity over carbon analogues. This chemoselective relay cyclization strategy was utilized in the improved synthesis of the tetrahydrofuran fragment in (−)-amphidinolide K.


Subject(s)
Alcohols/chemistry , Furans/chemical synthesis , Hydrogen/chemistry , Macrolides/chemical synthesis , Cyclization , Furans/chemistry , Macrolides/chemistry , Molecular Structure
3.
J Am Chem Soc ; 134(9): 4026-9, 2012 Mar 07.
Article in English | MEDLINE | ID: mdl-22320293

ABSTRACT

The development of new synthetic technologies for the selective fluorination of organic compounds has increased with the escalating importance of fluorine-containing pharmaceuticals. Traditional methods potentially applicable to drug synthesis rely on the use of ionic forms of fluorine (F(-) or F(+)). Radical methods, while potentially attractive as a complementary approach, are hindered by a paucity of safe sources of atomic fluorine (F(•)). A new approach to alkyl fluorination has been developed that utilizes the reagent N-fluorobenzenesulfonimide as a fluorine transfer agent to alkyl radicals. This approach is successful for a broad range of alkyl radicals, including primary, secondary, tertiary, benzylic, and heteroatom-stabilized radicals. Furthermore, calculations reveal that fluorine-containing ionic reagents are likely candidates for further expansion of this approach to polar reaction media. The use of these reagents in alkyl radical fluorination has the potential to enable powerful new transformations that otherwise would take multiple synthetic steps.


Subject(s)
Fluorine/chemistry , Hydrocarbons, Fluorinated/chemical synthesis , Free Radicals/chemical synthesis , Free Radicals/chemistry , Hydrocarbons, Fluorinated/chemistry , Models, Molecular , Molecular Structure , Quantum Theory
4.
J Org Chem ; 76(19): 7720-9, 2011 Oct 07.
Article in English | MEDLINE | ID: mdl-21819036

ABSTRACT

This study examines the chemoselectivity of alkoxy radical cyclizations onto silyl enol ethers compared to competing cyclizations, 1,5-hydrogen atom transfers (1,5-HATs), and ß-fragmentations. Cyclization onto silyl enol ethers in a 5-exo mode is greatly preferred over cyclization onto a terminal alkene. The selectivity decreases when any alkyl substitution is present on the competing alkene radical acceptor. Alkoxy radical 5-exo cyclizations displayed excellent chemoselectivity over competing ß-fragmentations. Alkoxy radical 5-exo cyclizations onto silyl enol ether also outcompeted 1,5-HATs, even for activated benzylic hydrogen atoms. In tetrahydropyran synthesis, where 1,5-HAT has plagued alkoxy radical cyclization methodologies, 6-exo cyclizations were the dominant mode of reactivity. ß-Fragmentation still remains a challenge for tetrahydropyran synthesis when an aryl group is present in the ß position.

5.
Org Lett ; 11(9): 2019-22, 2009 May 07.
Article in English | MEDLINE | ID: mdl-19326922

ABSTRACT

An efficient method for the rapid construction of carbo- and heterocycles has been developed using radical relay cyclizations initiated by alkoxy radicals. Linear substrates were cyclized to form a wide range of cyclopentane, pyrrolidine, tetrahydropyran, and tetrahydrofuran derivatives in excellent yields. This methodology was utilized as a key step in the synthesis of the tetrahydrofuran fragment in (-)-amphidinolide K.


Subject(s)
Furans/chemical synthesis , Macrolides/chemical synthesis , Animals , Catalysis , Combinatorial Chemistry Techniques , Cyclization , Dinoflagellida/chemistry , Furans/chemistry , Macrolides/chemistry , Molecular Structure , Stereoisomerism
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