On the Carbenic Nature of Nitrile Ylides: Experimental and Computational Characterization of Hydroxy and Amino Nitrile Ylides
Cláudio M. Nunes,
A. J. Lopes Jesus,
Mário T. S. Rosado
et al.
Abstract:Nitrile ylides are 1,3‐dipolar species with structures that are commonly described by propargylic and/or allenic resonance forms. Nevertheless, certain nitrile ylides exhibit a tendency to form dimers, suggesting the existence of structures characterized by an important carbenic contribution. To address the nitrile ylide carbenic nature, here we investigate two derivatives with OH and NH2 electron‐donating substituents. These nitrile ylides were generated in cryogenic matrices by UV‐irradiation of 3‐hydroxy‐ a… Show more
“…Nitrile ylides are highly reactive 1,3-dipoles containing a CNC framework with six electrons distributed across π and n orbitals. 9 They have proven to be key intermediates in versatile synthetic methods for rapidly assembling complex N-heterocycles. 10 Recently, the renaissance of multi-component reactions (MCRs) has been driven, not only due to their high efficiency, convergent nature and straightforward experimental procedures but also because of their value to the pharmaceutical industry for construction of structurally complex and functionally diverse molecules from several easily accessible components.…”
A photochemical three-component reaction for synthesizing tri-substituted oxazoles has been reported. This protocol featured simple starting materials, mild reaction conditions, broad substrate scope and wide synthetic utility.
“…Nitrile ylides are highly reactive 1,3-dipoles containing a CNC framework with six electrons distributed across π and n orbitals. 9 They have proven to be key intermediates in versatile synthetic methods for rapidly assembling complex N-heterocycles. 10 Recently, the renaissance of multi-component reactions (MCRs) has been driven, not only due to their high efficiency, convergent nature and straightforward experimental procedures but also because of their value to the pharmaceutical industry for construction of structurally complex and functionally diverse molecules from several easily accessible components.…”
A photochemical three-component reaction for synthesizing tri-substituted oxazoles has been reported. This protocol featured simple starting materials, mild reaction conditions, broad substrate scope and wide synthetic utility.
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