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Q.In the Hinsberg's method for separation of primary, secondary and tertiary amines, the reagent used is : (A) Nitrous acid (B) CHCl3CHCl_3 + aq. NaOH (C) C6H5SO2ClC_6H_5SO_2Cl (benzenesulphonyl chloride) (D) HCl/ZnCl2HCl/ZnCl_2

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Hinsberg's method separates amines based on their reactivity with benzenesulphonyl chloride (C6H5SO2ClC_6H_5SO_2Cl). Primary amines form a soluble salt, secondary amines form an insoluble solid, and tertiary amines do not react. The correct reagent is (C).

Why Hinsberg’s method works — the concept

The key idea is that amines differ in how many hydrogen atoms are attached to the nitrogen. A primary amine (RNH2RNH_2) has two hydrogens, a secondary amine (R2NHR_2NH) has one, and a tertiary amine (R3NR_3N) has none. Benzenesulphonyl chloride (C6H5SO2ClC_6H_5SO_2Cl) reacts with the N–H bond, replacing the hydrogen with a sulphonyl group. The product’s solubility in alkali depends on whether there is still an N–H hydrogen left to be removed by base.

This gives a clean, visual separation: one fraction dissolves in NaOH, another precipitates, and the third stays as an oily layer that doesn’t react at all.


Step-by-step reasoning

  1. What does Hinsberg’s reagent do? Benzenesulphonyl chloride (C6H5SO2ClC_6H_5SO_2Cl) is an electrophile. The nitrogen lone pair attacks the sulphur atom, displacing chloride. The product is a sulphonamide. The reaction is:

RNH2+C6H5SO2Cl→C6H5SO2NHR+HClRNH_2 + C_6H_5SO_2Cl \rightarrow C_6H_5SO_2NHR + HCl

  1. Primary amine — two N–H hydrogens The initial product C6H5SO2NHRC_6H_5SO_2NHR still has one N–H hydrogen. This hydrogen is acidic enough to be removed by aqueous NaOH, forming a water-soluble sodium salt:

C6H5SO2NHR+NaOH→C6H5SO2N(R)Na++H2OC_6H_5SO_2NHR + NaOH \rightarrow C_6H_5SO_2N(R)Na^+ + H_2O

So the primary amine ends up dissolved in the alkaline layer.

  1. Secondary amine — one N–H hydrogen

    The product C6H5SO2NR2C_6H_5SO_2NR_2 has no N–H hydrogen left (both are replaced by R groups). It cannot be deprotonated by NaOH, so it remains as an insoluble solid or oil that can be filtered off.

  2. Tertiary amine — no N–H hydrogen at all

    Tertiary amines have no hydrogen on nitrogen. They cannot undergo the substitution reaction with C6H5SO2ClC_6H_5SO_2Cl at all (no N–H bond to attack). The amine remains unreacted and can be extracted as a separate layer.

  3. Why not the other options? …

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