Q.In crossed Cannizzaro reaction between formaldehyde and benzaldehyde the alcohol formed is only benzyl alcohol and not methanol. Give reason.
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Start your 14-day free trial to unlock the full solution →In the crossed Cannizzaro reaction of formaldehyde with benzaldehyde, formaldehyde consistently acts as the hydride donor (gets oxidised) and benzaldehyde as the hydride acceptor (gets reduced), so the only alcohol product is benzyl alcohol, never methanol.
Requirement for Cannizzaro reaction: Only aldehydes with no -hydrogen (so they cannot undergo aldol condensation) undergo the Cannizzaro reaction with concentrated alkali. Both formaldehyde () and benzaldehyde () satisfy this condition.
Mechanism (in outline): Hydroxide ion adds to the carbonyl carbon of one aldehyde molecule to form a tetrahedral alkoxide intermediate; this intermediate then transfers a hydride ion () to the carbonyl carbon of a second aldehyde molecule. The molecule that donates the hydride is oxidised to a carboxylate; the molecule that accepts the hydride is reduced to an alcohol (alkoxide, protonated on workup).
Why formaldehyde is the donor, not the acceptor:
- is far less sterically hindered and its carbonyl carbon is more electrophilic (only H substituents, no ring to sterically block hydride transfer) than the carbonyl carbon of , which is flanked by a bulky, resonance-stabilised phenyl ring.
- The hydroxide–formaldehyde tetrahedral adduct, , is a particularly good hydride donor, so formaldehyde preferentially transfers its hydride to the benzaldehyde carbonyl. …
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