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Dimethyl maleate reaction with carbenes

By contrast, 1,2,4-triazole carbene 354 displays electrophilic character. Thus, it reacts with alcohols and amines producing triazoline derivatives 355 in quantitative yields. Oxygen or sulfur gives triazolinone and triazolinethione derivatives 356 (similar reaction with tellurium is known for imidazol-2-ylidenes). Reactions of 354 with dimethyl maleate or dimethyl fumarate lead to compounds 357, probably via ring opening of a cyclopropane intermediate with subsequent 1,2-hydrogen shift. [Pg.530]

In practice, donor substituents make it possible actually to isolate a range of carbenes 4.105. With somewhat less stabilisation, the carbene 4.106, although it is only found as a reactive intermediate, is exceptionally easy to form. It is the key intermediate in all the metabolic steps catalysed by thiamine coenzymes, and its reactions are characterised by its nucleophilicity. Similarly, dimethoxycarbene 4.107 reacts as a nucleophile with electrophiles like dimethyl maleate to give the intermediate 4.108, and hence the cyclopropane 4.109, but it does not insert into unactivated alkenes. [Pg.148]

Diphenylcyclopropenylidene (391) reacts with electrophilic olefins such as dimethyl fumarate and maleate only. The fact that the same spiropentene 393 (stereochemistry unknown) is isolated from reaction of 391 with both alkenes (equation 111) supports the intervention of zwitterion 392 and augments the concept of cyclopropenylidenes being very nucleophilic carbenes. [Pg.1321]


See other pages where Dimethyl maleate reaction with carbenes is mentioned: [Pg.189]    [Pg.412]    [Pg.763]    [Pg.229]    [Pg.763]   
See also in sourсe #XX -- [ Pg.148 ]




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Carbenes reactions

Dimethyl maleate

Dimethyl reactions

Maleated Maleation

Maleation

Reaction with carbenes

With Carbenes

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