Question:

The correct option(s) of reagents and reaction sequences suitable for carrying out the following transformation is/are: 

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Sequential allylic functionalization (via bromination or oxidation) followed by mild selective oxidation and 1,4-reduction is an effective strategy for converting alkenes to ketones.
Updated On: Apr 19, 2025
  • (i) NBS, (PhCOO)2;   (ii) aq. NaOH;   (iii) active MnO2;   (iv) Li/liq. NH3, t-BuOH
  • (i) m-CPBA;  (ii) BF3·Et2O
  • (i) SeO2;   (ii) Dess–Martin periodinane;   (iii) K[BH(s-Bu)3] (K-selectride)
  • (i) dil. KMnO4;   (ii) NaIO4
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The Correct Option is A, C

Solution and Explanation

The transformation is the conversion of cyclohexene to cyclohexanone. We must identify sequences that achieve this selectively.

  • (A)
    • (i) NBS, (PhCOO)2 → Allylic bromination of the double bond.
    • (ii) aq. NaOH → Nucleophilic substitution to form allylic alcohol.
    • (iii) MnO2 → Selective oxidation of allylic alcohol to enone.
    • (iv) Li/NH3, t-BuOH → Birch reduction: 1,4-reduction of enone to ketone.
    • This sequence is well-known for such transformations. CORRECT
  • (B)
    • (i) m-CPBA → Epoxidation of alkene.
    • (ii) BF3·Et2O → Lewis acid mediated ring opening.
    • This sequence does not lead efficiently to ketone. WRONG
  • (C)
    • (i) SeO2 → Allylic oxidation.
    • (ii) Dess–Martin periodinane → Oxidation to enone.
    • (iii) K-selectride → 1,4-reduction to ketone.
    • This route is synthetically reliable. CORRECT
  • (D)
    • (i) dil. KMnO4 → Oxidative cleavage may occur.
    • (ii) NaIO4 → Cleaves vicinal diols or enediols.
    • These do not lead selectively to cyclohexanone. WRONG

\[ \boxed{\text{Correct options: (A), (C)}} \]

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