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Diazomethane compounds diazoalkane cycloaddition reactions

Ketenes rarely produce [3+ 2]-cycloaddition products with diazo compounds. The reaction possibilities are complex, and nitrogen-free products are often obtained (5). Formation of a cyclopropanone represents one possibihty. Along these lines, the synthesis of (Z)-2,3-bis(trialkylsilyl)cyclopropanones and (Z)-2-trialkylsilyl-3-(triethylgermyl)cyclopropanones from diazo(trialkylsilyl)methanes and appropriate silyl- or germylketenes has been reported (256,257). It was found that subsequent reaction of the cyclopropanone with the diazoalkane was not a problem, in contrast to the reaction of diazomethane with the same ketenes. The high cycloaddition reactivity of diazomethylenephosphoranes also extends to heterocumulenes. The compound R2P(C1)=C=N2 (R = N(/-Pr)2) reacts with CS2, PhNCO and PhNCS to give the corresponding 1,2,3-triazole derivative (60). [Pg.581]

There is a fairly large number of theoretical investigations on diazoalkanes, particularly on diazomethane, in the context of reactions of these diazo compounds, e. g., on the use of diazoalkanes as 1,3-dipoles in cycloadditions or the rearrangement of diazomethane into its isomers. We will return in later chapters to such papers in the discussion of these reactions. [Pg.162]

The rates of 1,3-dipolar cycloadditions of diazoalkanes to alkenes and alkynes have been determined electron-attracting substituents in the latter increase the rate, in accordance with frontier molecular orbital theory, which predicts that these reactions are controlled by the interaction of the highest occupied molecular orbital of the diazo-compound with the lowest unoccupied molecular orbital of the dipolarophile " the kinetics of the reactions of methyl diazoacetate or phenyl diazomethanesulphonate, on the other hand, give rise to U-shaped activity functions, which is also explained by the theory. Diazomethane or... [Pg.173]

Diazoalkanes. Diazomethane is a common reactant in cycloaddition syntheses. It is a gas, which is generated as needed and introduced directly into a reaction mixture. Its resonance hybrid is shown as 5.28. This is our first example of a 1,3-dipole originating from a triply bonded grouping in the 1,2-dipolar form. Alkyl and phenyl diazo compounds are also useful reactants. [Pg.114]

The reaction of diazomethane with a,p-xmsaturated carbonyl compounds under classical protic conditions has been shown to produce pyrazoline products arising from 1,3-dipolar cycloaddition [3, 4]. Limited examples of a,p-xmsaturated carbonyl substrates undergoing ring expansion in the presence of Lewis acid promoters have been reported. It was not until the introduction of Lewis acids for diazoalkane ring expansion that these types of substrates were even reactive. In Drege s... [Pg.155]


See other pages where Diazomethane compounds diazoalkane cycloaddition reactions is mentioned: [Pg.150]    [Pg.571]    [Pg.551]    [Pg.494]    [Pg.44]    [Pg.480]    [Pg.36]    [Pg.305]    [Pg.1102]    [Pg.305]    [Pg.204]   
See also in sourсe #XX -- [ Pg.543 , Pg.544 , Pg.545 , Pg.546 , Pg.547 , Pg.548 ]

See also in sourсe #XX -- [ Pg.543 , Pg.544 , Pg.545 , Pg.546 , Pg.547 , Pg.548 ]




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Cycloaddition compounds

Cycloaddition reactions diazoalkanes

Cycloadditions diazomethane

Diazoalkanes cycloadditions

Diazoalkanes reaction

Diazomethane compounds

Diazomethane cycloaddition

Diazomethane, reactions

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