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Q.Passage: Aldehydes are generally more reactive than ketones in nucleophilic addition reactions due to steric and electronic reasons. Sterically, the presence of two relatively large substituents in ketones hinders the approach of nucleophile to carbonyl carbon than in aldehydes having only one such substituent. Electronically, aldehydes are more reactive than ketones because two alkyl groups reduce the electrophilicity of the carbonyl carbon more effectively than in former (i.e. than one alkyl group does). A nucleophile attacks the electrophilic carbon atom of the polar carbonyl group from a direction approximately perpendicular to the plane of sp2 hybridised orbitals of carbonyl carbon. The hybridisation of carbon changes from sp2 to sp3 in this process and a tetrahedral alkoxide intermediate is produced. This intermediate captures a proton from the reaction medium to give the electrically neutral product.

(c) Give the mechanism of reaction of ethanal with HCN.
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 2mImportance★★★★★
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Base-catalysed nucleophilic addition: cyanide attacks the carbonyl carbon perpendicular to its plane, then the resulting alkoxide is protonated.

Ethanal reacts with hydrogen cyanide (usually with a trace of base/CN⁻ present as catalyst) via nucleophilic addition, exactly as described in the passage:

Step 1 — Nucleophilic attack: The cyanide ion (CN−CN^-), a good nucleophile, attacks the electrophilic carbonyl carbon of CH3CHOCH_3CHO from a direction roughly perpendicular to the plane of the carbonyl's sp2sp^2 orbitals. As the C=O π\pi bond breaks (oxygen takes the electron pair), the carbon's hybridisation changes from sp2sp^2 to sp3sp^3, giving a tetrahedral alkoxide intermediate:

CH3−CHO+CN−⟶CH3−CH∣CN−O−CH_3-CHO + CN^- \longrightarrow CH_3-\underset{\underset{CN}{|}}{CH}-O^-

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