Complete the following reactions by writing the structure of the main products:
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.
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
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).
Student to attempt either option-(A) or (B):
(A) Write the features a molecule should have to act as a genetic material. In the light of the above features, evaluate and justify the suitability of the molecule that is preferred as an ideal genetic material.
OR
(B) Differentiate between the following: