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Q.Which of the following aldehydes will undergo Cannizzaro reaction ? (A) CH3−CH(CH3)−CHOCH_3{-}CH(CH_3){-}CHO (B) (CH3)3C−CHO(CH_3)_3C{-}CHO (C) CH3−CH2−CHOCH_3{-}CH_2{-}CHO (D) CH3−CH(CH3)−CH(CH3)−CHOCH_3{-}CH(CH_3){-}CH(CH_3){-}CHO

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The Cannizzaro reaction requires an aldehyde with no alpha-hydrogen atoms (i.e., not enolizable). Among the given options, only (CH3)3C−CHO(CH_3)_3C{-}CHO (pivalaldehyde) has no α\alpha-H, so it alone undergoes the reaction. The correct option is (B).

Why the Cannizzaro reaction happens — and when it doesn’t

The Cannizzaro reaction is a disproportionation of an aldehyde in concentrated base: one molecule is reduced to a primary alcohol, the other is oxidised to a carboxylate salt. But this reaction only works if the aldehyde cannot form an enolate. Why? Because if there is even one hydrogen on the carbon next to the carbonyl (the α\alpha-carbon), the base will preferentially pull that hydrogen off, leading to aldol condensation instead. So the key condition is: no α\alpha-hydrogen atoms.

Cannizzaro reaction condition:

The aldehyde must have the structure R−CHOR{-}CHO where RR has no H atoms on the carbon directly attached to the carbonyl group.

Common examples: HCHO (formaldehyde), ArCHO (benzaldehyde), (CH3)3C−CHO(CH_3)_3C{-}CHO (pivalaldehyde).

Now let’s examine each option.


1. Option (A): CH3−CH(CH3)−CHOCH_3{-}CH(CH_3){-}CHO

Draw the structure: the carbonyl carbon is at the end. The α\alpha-carbon is the one directly attached to the CHO group — that’s the carbon bearing the CH3CH_3 and CH(CH3)CH(CH_3) groups. Count its hydrogens: it has one hydrogen (since it’s a tertiary carbon with one H). That one α\alpha-H makes this aldehyde enolizable. In strong base, that H will be abstracted, and the resulting enolate will undergo aldol condensation — not Cannizzaro.

Watch out

A common mistake: thinking that a branched aldehyde automatically has no α\alpha-H. Check the α\alpha-carbon carefully — even one H is enough to block the Cannizzaro path.

2. Option (B): (CH3)3C−CHO(CH_3)_3C{-}CHO …

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