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1.
Org Lett ; 20(3): 538-541, 2018 02 02.
Article in English | MEDLINE | ID: mdl-29323920

ABSTRACT

At 2.5 mol % loadings using reaction temperatures between 30-55 °C, ortho-functionalized diaryl diselenides are highly effective organocatalytic oxidants for aerobic redox dehydrative amidic and peptidic bond formation using triethyl phosphite as a simple terminal reductant. This simple-to-perform organocatalytic reaction relies on the ability of selenols to react directly with dioxygen in air without recourse to metal catalysts. It represents an important step toward the development of a general, economical, and benign catalytic redox dehydration protocol.


Subject(s)
Amides/chemistry , Peptides/chemistry , Dehydration , Molecular Structure , Oxidation-Reduction
2.
J Org Chem ; 82(7): 3513-3529, 2017 04 07.
Article in English | MEDLINE | ID: mdl-28240030

ABSTRACT

We previously described a new organocatalytic oxidation-reduction-condensation for amide/peptide construction. The reaction system relies on triethylphosphite as the stoichiometric reductant and organocatalytic benzoisothiazolone/O2 in air as the oxidant. The reaction was assumed to generate catalytic quantities of S-acylthiosalicylamides as electrophiles, which are rapidly intercepted by amine reactants to generate amides/peptides and o-mercaptobenzamides. The latter are then gently reoxidized to the benzoisothiazolones under Cu-catalyzed aerobic conditions to complete the catalytic cycle. To gain a mechanistic understanding, we describe herein our studies of the stoichiometric generation of S-acylthiosalicylamides under oxidation-reduction-condensation conditions from a variety of benzoisothiazolones and carboxylic acids using triethylphosphite as the terminal reductant. These studies have revealed the presence of more than one reaction pathway when benzoisothiazolones react with triethylphosphite (including a rapid, direct deoxygenation of certain classes of benzoisothiazolones by triethylphosphite) and allow the identification of optimal reaction characteristics (benzoisothiazolone structure and solvent) for the generation of thioesters. These explorations will inform our efforts to develop highly effective and robust organocatalytic oxidation-reduction-condensation reactions that are based on the benzoisothiazolone and related motifs.

3.
J Am Chem Soc ; 138(21): 6715-8, 2016 06 01.
Article in English | MEDLINE | ID: mdl-27175892

ABSTRACT

Carboxylic acids and amine/amino acid reactants can be converted to amides and peptides at neutral pH within 5-36 h at 50 °C using catalytic quantities of a redox-active benzoisothiazolone and a copper complex. These catalytic "oxidation-reduction condensation" reactions are carried out open to dry air using O2 as the terminal oxidant and a slight excess of triethyl phosphite as the reductant. Triethyl phosphate is the easily removed byproduct. These simple-to-run catalytic reactions provide practical and economical procedures for the acylative construction of C-N bonds.


Subject(s)
Amides/chemistry , Carboxylic Acids/chemistry , Coordination Complexes/chemistry , Copper/chemistry , Organophosphates/chemistry , Oxygen/chemistry , Peptides/chemistry , Thiazoles/chemistry , Catalysis , Dehydration , Oxidation-Reduction
4.
Org Lett ; 15(7): 1524-7, 2013 Apr 05.
Article in English | MEDLINE | ID: mdl-23517341

ABSTRACT

The redox isomerization processes and tandem isomerization-aldolization reactions, mediated by nickel catalysts, offer new versatile entries to acylsilanes. For the second reaction, high diastereoselectivities, up to 98:2, have been obtained with bulky substituents on silicon.

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