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Example · Example 15

Q.Explain, using both steric and electronic reasoning, why acetaldehyde (CH3CHO\text{CH}_3\text{CHO}) reacts faster with HCN\text{HCN} than acetone (CH3COCH3\text{CH}_3\text{COCH}_3) does.

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Sterically, acetone's carbonyl carbon carries two methyl groups, while acetaldehyde's carries only one (the other position is a small, non-blocking hydrogen); as the nucleophile approaches and the carbon rehybridises towards the more crowded tetrahedral geometry of the addition product, acetone's extra methyl group raises the energy of that crowded transition state more than acetaldehyde's single methyl group does. Electronically, each alkyl group is weakly electron-donating; acetone's two methyl groups push more electron density into the carbonyl carbon than acetaldehyde's one, making acetone's carbonyl carbon less positively polarised and so less attractive to the incoming nucleophile (CN−\text{CN}^-, from HCN/trace bas …

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