Q.Assertion (A): Nitration of benzene with nitric acid requires the use of concentrated sulphuric acid.
Reason (R): The mixture of concentrated sulphuric acid and concentrated nitric acid produces the electrophile, NO2^+.
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Start your 14-day free trial to unlock the full solution →The key idea is that nitration of benzene requires a strong electrophile, , which is generated in situ by the reaction of concentrated with concentrated . Both the assertion and reason are correct, and the reason correctly explains the assertion.
The nitration of benzene is a classic example of electrophilic aromatic substitution. Benzene’s -electron cloud is rich, but it is not reactive enough to be attacked by a weak electrophile like nitric acid alone. The role of concentrated sulphuric acid is to protonate nitric acid, leading to the formation of the nitronium ion (), which is a powerful electrophile. Without this activation, the reaction would not proceed at a practical rate.
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Why nitric acid alone is insufficient
Nitric acid () can, in principle, act as a source of via self-protonation, but the equilibrium lies far to the left. The concentration of is too low to attack benzene effectively. Concentrated sulphuric acid is a much stronger acid and a better proton donor.
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The role of concentrated sulphuric acid
When concentrated is mixed with concentrated , the following reaction occurs:
The sulphuric acid protonates nitric acid, which then loses water to form the nitronium ion. This is the key step that generates the electrophile.
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The electrophile attacks benzene
The ion is linear and positively charged, making it highly electrophilic. It attacks the benzene ring to form a sigma complex (arenium ion), which then loses a proton to regenerate aromaticity, yielding nitrobenzene.
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Evaluating the assertion and reason …
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