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Question 56 of 56

Q.Carry out the following chemical transformations: i) [benzene with -NO2] -> [benzene with -NC]; ii) phthalimide (N-H) -> N-ethyl phthalimide (N-CH2-CH3); iii) aniline (-NH2) -> phenol (-OH).

West Bengal WbchseWest Bengal HS (WBCHSE) Board 2026Subjective· 3mImportance★★★★★
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The watermark hides some arrow reagents, but the three conversions are standard: nitrobenzene -> aniline -> phenyl isocyanide (carbylamine); phthalimide -> N-ethylphthalimide (Gabriel first step); aniline -> diazonium -> phenol.

  1. Benzene-NO2 -> Benzene-NC (nitrobenzene to phenyl isocyanide) Step 1 - reduce the nitro group to the amine: C6H5NO2 + 6[H] --(Sn / conc. HCl)--> C6H5NH2 + 2H2O. Step 2 - carbylamine (isocyanide) reaction of the primary aromatic amine: C6H5NH2 + CHCl3 + 3KOH (alc.) --heat--> C6H5-NC (phenyl isocyanide) + 3KCl + 3H2O.
  2. Phthalimide -> N-ethylphthalimide Phthalimide has an acidic N-H (flanked by two C=O). Treat with KOH to form potassium phthalimide, then alkylate with ethyl bromide: Phthalimide + KOH -> potassium phthalimide + H2O; potassium phthalimide + C2H5Br -> N-ethylphthalimide + KBr. (This is the first step of Gabriel phthalimide synthesis.)
  3. Aniline -> Phenol Diazotise, then hydrolyse: C6H5NH2 + NaNO2 + 2HCl --(0-5 C)--> C6H5N2+Cl- (benzenediazonium chloride) + NaCl + 2H2O. Warming the diazonium salt with water: C6H5N2+Cl- + H2O --heat--> C6H5OH (phenol) + N2 + HCl. Honesty note: the reagent conditions written over the arrows in the original paper are largely obscured by the page watermark; the reagents shown above are the standard, unambiguous textbook reagents for each of these named transformations, so the answers are secure despite the obscured labels. …

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