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1.3- dipolar cycloaddition reactions substituted aziridines

The intermolecular reaction of imines with acceptor-substituted carbene complexes generally leads to the formation of azomethine ylides. These can undergo several types of transformation, such as ring closure to aziridines [1242-1245], 1,3-dipolar cycloadditions [1133,1243,1246-1248], or different types of rearrangement (Figure 4.9). [Pg.202]

Garner et al. (90,320) used aziridines substituted with Oppolzer s sultam as azomethine ylide precursors. The azomethine ylide generated from 206 added to various electron-dehcient alkenes, such as dimethyl maleate, A-phenylmalei-mide, and methyl acrylate, giving the 1,3-dipolar cycloaddition product in good yields and up to 82% de (for A-phenylmaleimide). They also used familiar azomethine ylides formed by imine tautomerization (320). Aziridines such as 207 have also been used as precursors for the chiral azomethine ylides, but in reactions with vinylene carbonates, relatively low de values were obtained (Scheme 12.59) (92). [Pg.860]

Some examples of the preparation of oxirancs, thiiranes and aziridines by the reaction of diazo compounds with trifluoromethyl-substituted carbonyl and thiocarbonyl compounds. imines,and oximes arc known. However, as noted in Section 2.1.1.6.2.5.1., carbenes are not always the reactive species. Thus, the reaction can consist of a 1,3-dipolar cycloaddition, followed by decomposition of the resulting pyrazolinc. [Pg.555]

Kobayashi et al. found that lanthanide triflates were excellent catalysts for activation of C-N double bonds —activation by other Lewis acids required more than stoichiometric amounts of the acids. Examples were aza Diels-Alder reactions, the Man-nich-type reaction of A-(a-aminoalkyl)benzotriazoles with silyl enol ethers, the 1,3-dipolar cycloaddition of nitrones to alkenes, the 1,2-cycloaddition of diazoesters to imines, and the nucleophilic addition reactions to imines [24], These reactions are efficiently catalyzed by Yb(OTf)3. The arylimines reacted with Danishefsky s diene to give the dihydropyridones (Eq. 14) [25,26], The arylimines acted as the azadienes when reacted with cyclopentadiene, vinyl ethers or vinyl thioethers, providing the tet-rahydroquinolines (Eq. 15). Silyl enol ethers derived from esters, ketones, and thio-esters reacted with N-(a-aminoalkyl)benzotriazoles to give the /5-amino carbonyl compounds (Eq. 16) [27]. The diastereoselectivity was independent of the geometry of the silyl enol ethers, and favored the anti products. Nitrones, prepared in situ from aldehydes and N-substituted hydroxylamines, added to alkenes to afford isoxazoli-dines (Eq. 17) [28]. Addition of diazoesters to imines afforded CK-aziridines as the major products (Eq. 18) [29]. In all the reactions the imines could be generated in situ and the three-component coupling reactions proceeded smoothly in one pot. [Pg.921]


See other pages where 1.3- dipolar cycloaddition reactions substituted aziridines is mentioned: [Pg.669]    [Pg.33]    [Pg.82]    [Pg.112]    [Pg.28]    [Pg.178]    [Pg.89]    [Pg.28]    [Pg.151]    [Pg.89]    [Pg.89]    [Pg.440]    [Pg.939]    [Pg.124]    [Pg.614]    [Pg.89]    [Pg.85]    [Pg.280]    [Pg.17]    [Pg.116]    [Pg.851]    [Pg.307]    [Pg.93]    [Pg.307]   
See also in sourсe #XX -- [ Pg.263 ]




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1.3- Dipolar cycloadditions aziridines

1.3- Dipolar reactions

2-Substituted cycloaddition

Aziridination reactions

Aziridine reactions

Aziridine substitution

Aziridines cycloaddition

Aziridines cycloadditions

Aziridines reactions

Cycloaddition 3- substitution

Cycloaddition reactions 1,3-dipolar

Cycloadditions 1,3-dipolar reactions

Reactions aziridinations

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