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Q.Assertion (A) : Diazonium salts of aromatic amines are more stable than those of aliphatic amines. Reason (R) : Diazonium salts of aliphatic amines show resonance. Select the correct answer from the codes given below : (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Assertion (A) is false, but Reason (R) is true.

CBSECBSE Class XII Board 2024MCQ· 1mImportance★★★★★
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Aromatic diazonium salts are stabilised by resonance delocalisation of the positive charge into the benzene ring, making them far more stable than aliphatic diazonium salts, which lack such resonance. The Reason given is false because aliphatic diazonium salts do not show resonance. Hence, Assertion true, Reason false → option (C).

  1. Understand what the question is testing.

    This is a classic comparison of stability between aromatic and aliphatic diazonium salts. The key is the resonance stabilisation available to the aromatic system and its absence in the aliphatic one. The Reason claims the opposite — that aliphatic diazonium salts show resonance — which is factually wrong.

  2. Recall the structure of a diazonium salt.

    A diazonium salt has the general formula R−N2+X−R-N_2^+ X^-, where the N2+N_2^+ group (diazonium cation) is attached to an organic group RR. The positive charge is formally on the terminal nitrogen, but it can be delocalised if the RR group has π\pi-electrons.

  3. Why are aromatic diazonium salts stable?

    In an aromatic diazonium salt like benzenediazonium chloride (C6H5−N2+C_6H_5-N_2^+), the positive charge on the N2+N_2^+ group can be delocalised into the benzene ring through resonance. The lone pair on the nitrogen adjacent to the ring interacts with the π\pi-system, allowing the positive charge to spread over the ring. This resonance stabilisation is substantial — the salt can even be isolated as a crystalline solid at low temperatures.

    Resonance structures of benzenediazonium ion:

    C6H5−N+≡N⟷C6H5+=N−N (and other ring-delocalised forms)C_6H_5-\overset{+}{N}\equiv N \longleftrightarrow \overset{+}{C_6H_5}=N-N \text{ (and other ring-delocalised forms)}

  4. What about aliphatic diazonium salts?

    In an aliphatic diazonium salt (e.g., CH3−N2+CH_3-N_2^+), the alkyl group has no π\pi-electrons or empty orbitals to delocalise the positive charge. The N2+N_2^+ group is attached to a saturated carbon. There is no resonance possible — the positive charge remains localised on the terminal nitrogen. These salts are extremely unstable and decompose spontaneously at room temperature, often explosively, releasing nitrogen gas. …

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