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Aldehydes benzylic zinc reactivity

A branched-chain iodo sugar derivative, l,5-anhydro-4,6-0-benzyl-idene-2,3-dideoxy-3-C-(iodomethyl)-D-rifoo-hex-l-enitol [4,6-O-ben-zylidene-3-deoxy-3-C-(iodomethyl)-D-allal] (200), is one of the products formed on treatment of methyl 4,6-0-benzylidene-2,3-dideoxy-a-D-en/thro-hex-2-enopyranoside (77) with the Simmons-Smith reagent (diiodomethane and zinc-copper couple).123,212 Compound 200 displays high solvolytic reactivity, an observation that has been rationalized by supposing the formation of the highly stabilized carbonium ion213 (201). Thus, under conditions wherein methyl 2,3,4-tri-0-acetyl-6-deoxy-6-iodo-a-D-glucopyranoside required more than 24 hours to react appreciably with an excess of silver nitrate in 50% aqueous p-dioxane buffered with silver carbonate, the iodide 200 was hydrolyzed completely in less than 1 minute the product of hydrolysis of 200 is the cyclopropyl aldehyde 202. Methanolysis of... [Pg.305]

The insight that zinc ester enolates can be prepared prior to the addition of the electrophile has largely expanded the scope of the Reformatsky reaction.1-3 Substrates such as azomethines that quaternize in the presence of a-halo-esters do react without incident under these two-step conditions.23 The same holds true for acyl halides which readily decompose on exposure to zinc dust, but react properly with preformed zinc ester enolates in the presence of catalytic amounts of Pd(0) complexes.24 Alkylations of Reformatsky reagents are usually difficult to achieve and proceed only with the most reactive agents such as methyl iodide or benzyl halides.25 However, zinc ester enolates can be cross-coupled with aryl- and alkenyl halides or -triflates, respectively, in the presence of transition metal catalysts in a Negishi-type reaction.26 Table 14.2 compiles a few selected examples of Reformatsky reactions with electrophiles other than aldehydes or ketones.27... [Pg.293]

Although alkylzinc derivatives add only slowly to aldehydes, alkenylzinc derivatives display a higher reactivity (Equation (74)).142 Reactive benzylic or related zinc reagents smoothly add to aldehydes, providing the allylic alcohol in almost quantitative yield (Equation (75)).143... [Pg.104]


See other pages where Aldehydes benzylic zinc reactivity is mentioned: [Pg.351]    [Pg.215]    [Pg.215]    [Pg.215]    [Pg.306]    [Pg.44]    [Pg.1284]    [Pg.330]    [Pg.1284]    [Pg.95]    [Pg.969]    [Pg.211]    [Pg.211]    [Pg.314]    [Pg.211]    [Pg.450]    [Pg.53]    [Pg.289]   
See also in sourсe #XX -- [ Pg.768 ]




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Aldehydes reactivity

Benzylic Reactivity

Reactive aldehydes

Reactive zinc

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