Question:

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

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Reduction reactions with hydrogen and palladium catalysts typically lead to the addition of hydrogen to double bonds, forming saturated products.
Updated On: Jun 20, 2025
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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
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