Q.Write reaction to convert ethylamine into methylamine.
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Start your 14-day free trial to unlock the full solution →Step 1. Recognise this needs a carbon-count-DEcreasing conversion. Ethylamine (CH3-CH2-NH2) has two carbons; methylamine (CH3-NH2) has one -- so, exactly like question 2iii/3iv above, this conversion needs to REMOVE one carbon, which is precisely what Hofmann bromamide degradation (section 13.3.6) is for, but that reaction acts on an AMIDE, not on an amine directly -- so ethylamine must first be converted into the matching three-carbon amide's one-carbon-shorter target requires going via propanamide (the 3-carbon amide one carbon longer than the 2-carbon target), not via any 2-carbon intermediate.
Step 2. Convert ethylamine to propanoic acid. Ethylamine, diazotised with nitrous acid (section 13.6.6a), gives ethanol (via its unstable aliphatic diazonium salt) + N2; ethanol is then oxidised (e.g. with acidified KMnO4 or K2Cr2O7) to propanoic acid is WRONG on carbon count (ethanol oxidises to acetic acid, 2 carbons, not propanoic acid, 3 carbons) -- so this particular sub-route does not actually reach a 3-carbon acid. Re-deriving correctly: since diazotisation preserves carbon count (ethylamine's 2 carbons give ethanol's 2 carbons give, on oxidation, acetic acid's 2 carbons), reaching the needed 3-carbon amide instead requires a SEPARATE, one-carbon-extending step first -- exactly the alkyl-cyanide 'step-up' route of section 13.3.3, starting from a 2-carbon halide (ethyl halide) rather than from the amine itself. …
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