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Q.Which of the following does not give aldol condensation reaction ? (A) CH3−CHOCH_3-CHO (B) C6H11−CHOC_6H_{11}-CHO (cyclohexanecarbaldehyde — a saturated cyclohexane ring bearing −CHO-CHO, drawn as a structure) (C) C6H5−CHOC_6H_5-CHO (benzaldehyde — a benzene ring bearing −CHO-CHO, drawn as a structure) (D) CH3COCH3CH_3COCH_3

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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Aldol condensation requires at least one α\alpha-hydrogen next to the carbonyl group. Benzaldehyde (C6H5−CHOC_6H_5-CHO) has no α\alpha-hydrogen, so it cannot undergo aldol condensation. The correct answer is (C).

The Cannizzaro reaction and aldol condensation are two classic carbonyl reactions that often trip students up because they seem to compete. The key difference is simple: aldol condensation needs an α\alpha-hydrogen (a hydrogen on the carbon atom directly adjacent to the carbonyl group), while the Cannizzaro reaction happens when there is no α\alpha-hydrogen at all.

Let’s see why this matters for each option.

  1. Identify the requirement for aldol condensation

    For a carbonyl compound to undergo aldol condensation, it must have at least one hydrogen atom on the α\alpha-carbon (the carbon next to the C=OC=O group). This hydrogen is acidic enough to be removed by a base, forming an enolate ion. That enolate then attacks another carbonyl molecule, leading to the β\beta-hydroxy aldehyde or ketone, which can dehydrate to give an α,β\alpha,\beta-unsaturated product.

  2. Examine each compound

    • (A) CH3−CHOCH_3-CHO (acetaldehyde): The α\alpha-carbon is the CH3CH_3 group. It has three α\alpha-hydrogens. So it readily undergoes aldol condensation.
    • (B) C6H11−CHOC_6H_{11}-CHO (cyclohexanecarbaldehyde): The aldehyde group is attached to a saturated cyclohexane ring. The carbon directly attached to the −CHO-CHO is a ring carbon — that carbon has at least one hydrogen (since it’s sp3sp^3 hybridized and not fully substituted). So there is at least one α\alpha-hydrogen. This compound can undergo aldol condensation. …

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