An organic compound 'A' with empirical formula gives sooty flame on burning. Its reaction with bromine solution in low polarity solvent results in high yield of B. B is:
- A

- B

- C

- D

An organic compound 'A' with empirical formula gives sooty flame on burning. Its reaction with bromine solution in low polarity solvent results in high yield of B. B is:




Correct answer:C
Standard Method
Given: Compound A has empirical formula and gives a sooty flame on burning.
Find: The major product B formed with bromine in a low polarity solvent.
Aromatic compounds burn with a sooty flame. So compound A is identified as phenol.

In a low polarity solvent such as , phenol undergoes electrophilic substitution with bromine and gives predominantly the monobrominated product. The para product is obtained in high yield.
Therefore, B is p-bromophenol, so the correct option is C.
Detailed Extraction from the solution
Given: Aromatic compounds such as phenols burn with a sooty flame due to incomplete combustion.
Find: Which structure corresponds to product B after bromination in a low polarity solvent.
Phenol reacts with bromine in the presence of a low polarity solvent like by electrophilic substitution, where bromine replaces a hydrogen atom on the benzene ring.

The solution explicitly states that the correct structure for B is obtained by brominating phenol as shown in option (3). Hence, the correct option is C.
There is a discrepancy with the answer key, which says (1), but the solution is taken.
Identifying as a non-aromatic alcohol is incorrect because the sooty flame indicates an aromatic system. First infer the aromatic nature, then identify A as phenol.
Assuming bromination gives tribromophenol is wrong here because the solvent is low polarity, such as . In this medium, phenol mainly undergoes monobromination, not the aqueous bromine reaction.
Choosing the ortho product as the major product is a common error. Although phenol is ortho-para directing, the para product is formed in higher yield due to lower steric hindrance.
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