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1.
J Org Chem ; 88(3): 1860-1864, 2023 Feb 03.
Artigo em Inglês | MEDLINE | ID: mdl-36695532

RESUMO

A bis(arylsulfonyl) peroxide-mediated 1,2-difunctionalization of cyclic enol ethers is reported. Bis(nosyl) peroxide selectively sulfonylates the 3-position of enol ethers, generating an oxocarbenium ion that is trapped by a carboxylic acid nucleophile at the 2-position. The reaction proceeds in a good yield and tolerates a variety of cyclic enol ethers, including glycals as well as various carboxylic acids, which act as the oxocarbeium ion trapping reagents.

2.
Tetrahedron Lett ; 722021 May 25.
Artigo em Inglês | MEDLINE | ID: mdl-37841701

RESUMO

Earth abundant metal catalysts hold advantages in cost, environmental burden and chemoselectivity over precious metal catalysts. Differences in reactivity for a given metal center result from ligand field strength, which can promote reaction through either open- or closed-shell carbon intermediates. Herein we report a simple protocol for cobalt-catalyzed alkene reduction. Instead of using an oxidative turnover mechanism that requires stoichiometric hydride, we find a reductive turnover mechanism that requires stoichiometric proton. The reaction mechanism appears to involve coordination and hydrocobaltation of terminal alkenes.

3.
Chemistry ; 26(68): 15804-15810, 2020 Dec 04.
Artigo em Inglês | MEDLINE | ID: mdl-32584428

RESUMO

A mild, metal-free, atmospheric oxygen-mediated radical hydrothiolation of alkenes (and alkyne) is reported. A variety of sulfur containing motifs including alkanethiols, thiophenols and thioacids undergo an atmospheric oxygen-mediated radical hydrothiolation reaction with a plethora of alkenes in good yield with excellent functional group compatibility, typically with short reaction times to furnish a range of functionalized products. Biomolecules proved tolerant to the conditions and the procedure is robust and easily executable requiring no specialized equipment. Concise mechanistic studies confirm the process proceeds through radical intermediates in a thiol-ene reaction manifold. The methodology offers an efficient "green" approach for thiol-ene mediated "click" ligation and a milder alternative to thermally initiated hydrothiolation processes.

4.
Org Lett ; 21(9): 3460-3464, 2019 05 03.
Artigo em Inglês | MEDLINE | ID: mdl-31013100

RESUMO

A novel strategy for the synthesis of δ-thiolactones from inexpensive and readily available γ-unsaturated esters has been developed. This strategy incorporates a radical acyl thiol-ene reaction as the key C-S bond forming step. Cyclization is achieved via a Steglich-type thiolactonization of 5-mercaptopentanoic acids. We report the facile and scalable synthesis of δ-thiolactones in moderate to good yield under mild reaction conditions with tolerance for a range of functional groups.

5.
J Am Chem Soc ; 141(19): 7709-7714, 2019 05 15.
Artigo em Inglês | MEDLINE | ID: mdl-31030508

RESUMO

Metal-hydride hydrogen atom transfer (MHAT) functionalizes alkenes with predictable branched (Markovnikov) selectivity. The breadth of these transformations has been confined to π-radical traps; no sp3 electrophiles have been reported. Here we describe a Mn/Ni dual catalytic system that hydroalkylates unactivated olefins with unactivated alkyl halides, yielding aliphatic quaternary carbons.


Assuntos
Alcenos/química , Carbono/química , Alquilação , Hidrogênio/química
6.
Org Lett ; 20(10): 2948-2951, 2018 05 18.
Artigo em Inglês | MEDLINE | ID: mdl-29717872

RESUMO

A new synthetic approach to thiolactones that employs an efficient acyl thiol-ene (ATE) or acyl thiol-yne (ATY) cyclization to convert unsaturated thiocarboxylic acid derivatives into thiolactones under very mild conditions is described. The high overall yields, fast kinetics, high diastereoselectivity, excellent regiocontrol, and broad substrate scope of these reaction processes render this a very useful approach for diversity-oriented synthesis and drug discovery efforts. A detailed computational rationale is provided for the observed regiocontrol.

7.
Molecules ; 23(4)2018 04 13.
Artigo em Inglês | MEDLINE | ID: mdl-29652812

RESUMO

Thiolactones have attracted considerable attention in recent years as bioactive natural products, lead compounds for drug discovery, molecular probes, and reagents for polymerisation. We have investigated radical-mediated C-C bond forming reactions as a strategy for thiolactone synthesis. Cyclisation of an α-bromo aluminium thioacetal was investigated under radical conditions. It was found that at low temperature, a radical fragmentation and rearrangement process occurs. A putative reaction mechanism involving a previously unreported aluminium templated thiol-ene step for the rearrangement process is presented. Cyclisation reactions of α-bromo thioesters and α-xanthate thioesters under radical mediated conditions furnished the desired thiolactones in moderate yields.


Assuntos
Alumínio/química , Compostos de Sulfidrila/síntese química , Ciclização , Estrutura Molecular , Compostos de Sulfidrila/química
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