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Nitrile ylides structure

Studies of the reaction of photochemically generated carbenes with nitriles to give nitrile ylides have again attracted attention. Flash photolysis of 1-naphthyldiEizomethane (51) in acetonitrile or of the azirine (52) gave the same transient species to which the nitrile ylide structure (53) was assigned. The first stable nitrile ylide was also obtained in this way irradiation of diazotetrakis(trifluoromethyl)cyclopentadiene (54) in the presence of 1-cyanoadamantane (55) gave the crystalline ylide (56).An X-ray structure determination showed that the 1,3-dipole is essentially linear. [Pg.446]

The ring opening of 2//-azirines to yield vinylnitrenes on thermolysis, or nitrile ylides on photolysis, also leads to pyrrole formation (B-82MI30301). Some examples proceeding via nitrile ylides are shown in Scheme 92. The consequences of attempts to carry out such reactions in an intramolecular fashion depend not only upon the spatial relationship of the double bond and the nitrile ylide, but also upon the substituents of the azirine moiety since these can determine whether the resulting ylide is linear or bent. The HOMO and second LUMO of a bent nitrile ylide bear a strong resemblance to the HOMO and LUMO of a singlet carbene so that 1,1-cycloadditions occur to carbon-carbon double bonds rather than the 1,3-cycloadditions needed for pyrrole formation. The examples in Scheme 93 provide an indication of the sensitivity of these reactions to structural variations. [Pg.140]

Heterocyclic sulphoxides of general structure 185,186 and 187 have been prepared by cycloaddition of diarylsulphines 173b to nitrile oxides 188226, nitrile ylides 189227 and nitrones 190228, respectively (equation 100). [Pg.277]

Decarboxylation of 1,3-dimethylorotic acid in the presence of benzyl bromide yields 6-benzyl-1,3-dimethyluracil and presumably involves a C(6) centered nucleophilic intermediate which could nonetheless have either a carbene or ylide structure. Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometry has been used to explore the gas-phase reactions of methyl nitrate with anions from active methylene compounds anions of aliphatic ketones and nitriles react by the 5n2 mechanism and Fco reactions yielding N02 ions are also observed nitronate ions are formed on reaction with the carbanions derived from toluenes and methylpyridines. [Pg.381]

The first nitrile ylide stable enough to be isolated (i.e., 1) has been prepared by the carbene/nitrile method (1). For this dipole, the anionic component is stabilized by electron delocalization and the nitrilium component by the steric bulk of the adamantyl group to such an effect that it has a melting point of 230 °C. The X-ray structure showed that the nitrile ylide moiety is close to linear and much like the resonance structure shown below. [Pg.474]

Work on the molecular structure of benzonitrilio methylide 8/9 has been carried out via Fourier transform infrared (FTIR) smdies on it and five isotope-labeled variants. The nitrile ylides were generated in nitrogen matrices at 12 K either directly, by photolysis of the azirine 7, or indirectly from the azidostyrenes 6 (4). [Pg.475]

It was found that the azirine-nitrile ylide isomerization was a completely reversible process. The unlabeled nitrile ylide showed a prominent band at 1926 cm that underwent a 66-cm shift with N substitution. This shift was interpreted as being consistent with an allene-like skeleton (8) rather than the alternative pwpargyl-like stmcture (9). This conclusion was supported by the spectra from the C- and H-labeled variants. Warming the nitrile ylide in a xenon matrix from 12 to 82 K provided no new absorptions suggesting that the allene-like structure may also be adopted in solution. Some absorption spectra for benzonitriho benzylide (DPNY) and some substituted benzonitrilio methylides obtained via pulsed-laser photolysis of azirines are given in Table 7.1 (5). [Pg.475]

The direct assembly of nitrile ylides by the reaction of carbenes (e.g., 84) with nitriles has, in principle, great potential for structural variation as both components are easily accessible. The first reports of such reactions appeared in the early 1980s and were concerned with the reaction of nitriles with stabilized carbenes such as 84 and 86 (41 3). [Pg.485]


See other pages where Nitrile ylides structure is mentioned: [Pg.53]    [Pg.57]    [Pg.82]    [Pg.487]    [Pg.489]    [Pg.499]    [Pg.500]    [Pg.530]   
See also in sourсe #XX -- [ Pg.1082 ]




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Azirines, nitrile ylide structure 2 + 3]-cycloaddition reactions

Azirines, nitrile ylide structure carbene reactions

Azirines, nitrile ylide structure photolysis

Benzonitrilio methylide, nitrile ylide structure

Carbenes nitrile ylide structure

Nitrile ylide

Nitrile ylides

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