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1.
Nature ; 524(7563): 79-83, 2015 Aug 06.
Artículo en Inglés | MEDLINE | ID: mdl-26200342

RESUMEN

Amides are common functional groups that have been studied for more than a century. They are the key building blocks of proteins and are present in a broad range of other natural and synthetic compounds. Amides are known to be poor electrophiles, which is typically attributed to the resonance stability of the amide bond. Although amides can readily be cleaved by enzymes such as proteases, it is difficult to selectively break the carbon-nitrogen bond of an amide using synthetic chemistry. Here we demonstrate that amide carbon-nitrogen bonds can be activated and cleaved using nickel catalysts. We use this methodology to convert amides to esters, which is a challenging and underdeveloped transformation. The reaction methodology proceeds under exceptionally mild reaction conditions, and avoids the use of a large excess of an alcohol nucleophile. Density functional theory calculations provide insight into the thermodynamics and catalytic cycle of the amide-to-ester transformation. Our results provide a way to harness amide functional groups as synthetic building blocks and are expected to lead to the further use of amides in the construction of carbon-heteroatom or carbon-carbon bonds using non-precious-metal catalysis.


Asunto(s)
Amidas/química , Carbono/química , Técnicas de Química Sintética/métodos , Ésteres/síntesis química , Níquel/química , Nitrógeno/química , Alcoholes , Benzamidas/química , Benzoatos/síntesis química , Catálisis , Termodinámica
2.
Angew Chem Int Ed Engl ; 60(5): 2472-2477, 2021 02 01.
Artículo en Inglés | MEDLINE | ID: mdl-33029868

RESUMEN

We report a means to achieve the addition of two disparate nucleophiles to the amide carbonyl carbon in a single operational step. Our method takes advantage of non-precious-metal catalysis and allows for the facile conversion of amides to chiral alcohols via a one-pot Suzuki-Miyaura cross-coupling/transfer-hydrogenation process. This study is anticipated to promote the development of new transformations that allow for the conversion of carboxylic acid derivatives to functional groups bearing stereogenic centers via cascade processes.


Asunto(s)
Amidas/química , Níquel/química , Catálisis , Estructura Molecular , Estereoisomerismo
3.
Angew Chem Int Ed Engl ; 55(48): 15129-15132, 2016 11 21.
Artículo en Inglés | MEDLINE | ID: mdl-27813308

RESUMEN

Recent studies have demonstrated that amides can be used in nickel-catalyzed reactions that lead to cleavage of the amide C-N bond, with formation of a C-C or C-heteroatom bond. However, the general scope of these methodologies has been restricted to amides where the carbonyl is directly attached to an arene or heteroarene. We now report the nickel-catalyzed esterification of amides derived from aliphatic carboxylic acids. The transformation requires only a slight excess of the alcohol nucleophile and is tolerant of heterocycles, substrates with epimerizable stereocenters, and sterically congested coupling partners. Moreover, a series of amide competition experiments establish selectivity principles that will aid future synthetic design. These studies overcome a critical limitation of current Ni-catalyzed amide couplings and are expected to further stimulate the use of amides as synthetic building blocks in C-N bond cleavage processes.


Asunto(s)
Amidas/química , Ésteres/síntesis química , Níquel/química , Compuestos Organometálicos/química , Catálisis , Ésteres/química , Conformación Molecular
4.
J Am Chem Soc ; 136(42): 14710-3, 2014 Oct 22.
Artículo en Inglés | MEDLINE | ID: mdl-25275668

RESUMEN

The first total synthesis of N-methylwelwitindolinone B isothiocyanate is reported. The route features several key steps, including a regio- and diastereoselective chlorinative oxabicycle ring-opening reaction to introduce the challenging alkyl chloride motif.


Asunto(s)
Compuestos Bicíclicos Heterocíclicos con Puentes/química , Halogenación , Alcaloides Indólicos/química , Alcaloides Indólicos/síntesis química , Isotiocianatos/química , Isotiocianatos/síntesis química , Técnicas de Química Sintética , Modelos Moleculares , Conformación Molecular
5.
Chem Sci ; 8(9): 6433-6438, 2017 Sep 01.
Artículo en Inglés | MEDLINE | ID: mdl-29163929

RESUMEN

Transamidation, or the conversion of one amide to another, is a long-standing challenge in organic synthesis. Although notable progress has been made in the transamidation of primary amides, the transamidation of secondary amides has remained underdeveloped, especially when considering aliphatic substrates. Herein, we report a two-step approach to achieve the transamidation of secondary aliphatic amides, which relies on non-precious metal catalysis. The method involves initial Boc-functionalization of secondary amide substrates to weaken the amide C-N bond. Subsequent treatment with a nickel catalyst, in the presence of an appropriate amine coupling partner, then delivers the net transamidated products. The transformation proceeds in synthetically useful yields across a range of substrates. A series of competition experiments delineate selectivity patterns that should influence future synthetic design. Moreover, the transamidation of Boc-activated secondary amide derivatives bearing epimerizable stereocenters underscores the mildness and synthetic utility of this methodology. This study provides the most general solution to the classic problem of secondary amide transamidation reported to date.

6.
Nat Chem ; 8(1): 75-9, 2016 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-26673267

RESUMEN

The Suzuki-Miyaura coupling has become one of the most important and prevalent methods for the construction of C-C bonds. Although palladium catalysis has historically dominated the field, the use of nickel catalysis has become increasingly widespread because of its unique ability to cleave carbon-heteroatom bonds that are unreactive towards other transition metals. We report the first nickel-catalysed Suzuki-Miyaura coupling of amides, which proceeds by an uncommon cleavage of the amide C-N bond after N-tert-butoxycarbonyl activation. The methodology is mild, functional-group tolerant and can be strategically employed in sequential transition-metal-catalysed cross-coupling sequences to unite heterocyclic fragments. These studies demonstrate that amides, despite classically considered inert substrates, can be harnessed as synthons for use in reactions that form C-C bonds through cleavage of the C-N bond using non-precious metal catalysis.


Asunto(s)
Amidas/química , Cetonas/síntesis química , Níquel/química , Catálisis , Cetonas/química , Estructura Molecular , Acoplamiento Oxidativo
7.
Nat Commun ; 7: 11554, 2016 05 20.
Artículo en Inglés | MEDLINE | ID: mdl-27199089

RESUMEN

A long-standing challenge in synthetic chemistry is the development of the transamidation reaction. This process, which involves the conversion of one amide to another, is typically plagued by unfavourable kinetic and thermodynamic factors. Although some advances have been made with regard to the transamidation of primary amide substrates, secondary amide transamidation has remained elusive. Here we present a simple two-step approach that allows for the elusive overall transformation to take place using non-precious metal catalysis. The methodology proceeds under exceptionally mild reaction conditions and is tolerant of amino-acid-derived nucleophiles. In addition to overcoming the classic problem of secondary amide transamidation, our studies expand the growing repertoire of new transformations mediated by base metal catalysis.


Asunto(s)
Amidas/química , Níquel/química , Catálisis
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