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Acetals, cyclic, reaction with acyl trifluoroacetates

Rate constants and Arrhenius parameters for the reaction of Et3Si radicals with various carbonyl compounds are available. Some data are collected in Table 5.2 [49]. The ease of addition of EtsSi radicals was found to decrease in the order 1,4-benzoquinone > cyclic diaryl ketones, benzaldehyde, benzil, perfluoro propionic anhydride > benzophenone alkyl aryl ketone, alkyl aldehyde > oxalate > benzoate, trifluoroacetate, anhydride > cyclic dialkyl ketone > acyclic dialkyl ketone > formate > acetate [49,50]. This order of reactivity was rationalized in terms of bond energy differences, stabilization of the radical formed, polar effects, and steric factors. Thus, a phenyl or acyl group adjacent to the carbonyl will stabilize the radical adduct whereas a perfluoroalkyl or acyloxy group next to the carbonyl moiety will enhance the contribution given by the canonical structure with a charge separation to the transition state (Equation 5.24). [Pg.101]


See other pages where Acetals, cyclic, reaction with acyl trifluoroacetates is mentioned: [Pg.83]    [Pg.70]    [Pg.77]    [Pg.83]    [Pg.356]    [Pg.754]    [Pg.754]    [Pg.754]    [Pg.267]    [Pg.267]    [Pg.267]    [Pg.186]   
See also in sourсe #XX -- [ Pg.83 ]




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Acetals acylation

Acetals cyclic

Acetals reactions with

Acetates reactions with

Acyl cyclic

Acyl trifluoroacetates

Acylals, cyclic

Acylation, with acyl trifluoroacetates

Cyclic acetalization

Cyclic reactions

Reactions with Cyclic Acetals

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