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Q.Explain briefly :

(a) Carbylamine reaction
(b) Gabriel phthalimide synthesis
CBSECBSE Class XII Board 2023Subjective· 2mImportance★★★★★
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Both reactions are classic methods for preparing amines. The carbylamine reaction is a test for primary amines (aliphatic or aromatic), producing a foul-smelling isocyanide. Gabriel phthalimide synthesis is a method to prepare pure primary aliphatic amines from alkyl halides, using phthalimide as a protected ammonia equivalent.


(a) Carbylamine Reaction

Concept and Intuition

This reaction is also known as the isocyanide test. It is a specific test for the presence of a primary amine group (−NH2-NH_2) attached to either an alkyl or an aryl group. The key idea is that a primary amine, when treated with chloroform (CHCl3CHCl_3) and a strong base (like alcoholic KOHKOH), gets converted into an isocyanide (also called a carbylamine). Isocyanides have a notoriously foul, penetrating smell, which makes this reaction a very effective qualitative test.

Secondary and tertiary amines do not give this reaction, making it highly selective.

Step-by-Step Explanation

  1. The Reagents: We start with a primary amine (R−NH2R-NH_2), chloroform (CHCl3CHCl_3), and a strong base (usually alcoholic KOHKOH). The reaction requires heating.

  2. Formation of Dichlorocarbene: The strong base (KOHKOH) abstracts a proton from chloroform. This generates a highly reactive intermediate called dichlorocarbene (:CCl2:CCl_2).

CHCl3+KOH→:CCl2+KCl+H2OCHCl_3 + KOH \rightarrow :CCl_2 + KCl + H_2O

  1. Nucleophilic Attack: The lone pair of electrons on the nitrogen atom of the primary amine acts as a nucleophile and attacks the electron-deficient carbon atom of the dichlorocarbene.

  2. Dehydrohalogenation: The intermediate formed then undergoes a series of dehydrohalogenation steps (loss of HClHCl molecules) in the presence of the base, ultimately yielding an isocyanide (R−NCR-NC).

R−NH2+:CCl2→−HClKOHR−N=C:R-NH_2 + :CCl_2 \xrightarrow[-HCl]{KOH} R-N=C:

The final product is an alkyl or aryl isocyanide.
Watch out

The carbylamine reaction is only given by primary amines. Do not use it for secondary or tertiary amines. Also, the smell of isocyanides is extremely unpleasant and toxic, so this test should be performed in a fume hood.

General Reaction: R−NH2+CHCl3+3KOH→ΔR−NC+3KCl+3H2OR-NH_2 + CHCl_3 + 3KOH \xrightarrow{\Delta} R-NC + 3KCl + 3H_2O


(b) Gabriel Phthalimide Synthesis

Concept and Intuition

This is a laboratory method to prepare pure primary aliphatic amines without contamination from secondary or tertiary amines. The core idea is to use phthalimide as a synthetic equivalent of ammonia (NH3NH_3). Why not just use ammonia directly? Because direct alkylation of ammonia (NH3+RXNH_3 + RX) gives a mixture of primary, secondary, and tertiary amines (and even quaternary ammonium salts). The Gabriel synthesis cleverly blocks over-alkylation by using a "protected" nitrogen atom that can only be alkylated once.

Step-by-Step Explanation

  1. Formation of the Nucleophile: Phthalimide is an imide. The hydrogen atom attached to its nitrogen is slightly acidic due to the two adjacent carbonyl groups. When treated with a base like alcoholic KOHKOH, it loses this proton to form the potassium phthalimide salt. This salt is a strong nucleophile. Phthalimide+KOH→Potassium phthalimide+H2O\text{Phthalimide} + KOH \rightarrow \text{Potassium phthalimide} + H_2O …

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