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Q.Why are ketones less reactive than aldehydes towards nucleophilic reactions ?

Mizoram MbseMizoram Board of School Education HSSLC 2025Subjective· 2mImportance★★★★★
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A ketone's carbonyl carbon has two alkyl/aryl groups (vs an aldehyde's one alkyl + one H), giving more steric crowding and more electron-donation into the carbonyl carbon, both of which slow nucleophilic addition.

Nucleophilic addition at a carbonyl carbon requires the nucleophile to approach and bond to that carbon, and is favoured when the carbonyl carbon is both sterically accessible and sufficiently electrophilic (electron-poor).

1. Steric factor:

An aldehyde (R-CHO) has only one alkyl/aryl group and one small hydrogen atom on the carbonyl carbon. A ketone (R-CO-R') has two alkyl/aryl groups. The bulkier substituents in a ketone create more steric hindrance, making it physically harder for a nucleophile to approach and attack the carbonyl carbon, and also making the resulting tetrahedral product more crowded (less stable), which raises the transition-state energy.

2. Electronic factor: …

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