Question:

Complete the following reactions by writing the structure of the main products:

Show Hint

Reduction reactions with hydrogen and palladium catalysts typically lead to the addition of hydrogen to double bonds, forming saturated products.
Hide Solution
collegedunia
Verified By Collegedunia

Solution and Explanation

Reaction (I)

Reactants: Cyclohexanone + Semicarbazide (H2NCONH–NH2)

Reaction Type: Formation of semicarbazone (nucleophilic addition–elimination reaction with carbonyl compound)

Product: Cyclohexanone semicarbazone

Structure of Product:

Cyclohexane ring – C=N–NH–CO–NH2

This is formed by condensation of the carbonyl group (=O) with semicarbazide, replacing =O with =N–NH–CO–NH2.

Reaction (II)

Reactants: Dimethyl cadmium [(CH3)2Cd] + 2 molecules of acetyl chloride (CH3COCl)

Reaction Type: Ketone synthesis via organocadmium reagent

Product: 2 molecules of butan-2-one (CH3COCH2CH3)

Balanced Reaction:

(CH3)2Cd + 2 CH3COCl → 2 CH3COCH3 (acetone) + CdCl2

Reaction (III)

Reactants: Benzoyl chloride (C6H5COCl) + H2 in presence of Pd–BaSO4

Reaction Type: Rosenmund reduction

Product: Benzaldehyde (C6H5CHO)

Mechanism: The acid chloride is selectively reduced to aldehyde using hydrogen and poisoned palladium catalyst (Pd–BaSO4).

Summary of Products:

  1. (I): Cyclohexanone semicarbazone
  2. (II): Acetone (2 molecules)
  3. (III): Benzaldehyde
Was this answer helpful?
0
1

Questions Asked in CBSE CLASS XII exam

View More Questions