🍷 Alcohols, Phenols & Ethers
Oxygen-containing functional groups provide diverse synthetic routes through nucleophilic substitution, dehydration rearrangements, and aromatic substitutions. High-yield competitive exam highlights include Lucas reagent kinetics, Pinacol rearrangement migratory aptitudes, Kolbe vs Reimer-Tiemann phenol carboxylations, and Williamson ether cleavage under hot concentrated
1. 🧪 Alcohols: Classification & Rearrangements
1.1 Lucas Test (Distinction of Alcohols)
Alcohols: Immediate turbidity/cloudiness appears within seconds at room temperature ( forms instantaneously). Alcohols: Turbidity appears within . Alcohols: Solution remains clear; turbidity appears only on prolonged heating.
1.2 Pinacol-Pinacolone Rearrangement
Acid-catalyzed dehydration of 1,2-diols (Pinacols) to Ketones with 1,2-alkyl/aryl shift:
Migratory Aptitude Rules:
(More electron-rich aryl groups migrate significantly faster!).
2. 🌸 Phenols: Industrial Synthesis & Named Reactions
2.1 Industrial Synthesis from Cumene (Isopropylbenzene)
2.2 Kolbe-Schmitt Reaction (Synthesis of Salicylic Acid)
- Acetylation of salicylic acid with acetic anhydride gives Aspirin (Acetylsalicylic Acid).
2.3 Reimer-Tiemann Reaction (Synthesis of Salicylaldehyde)
- Active Electrophile: Dichlorocarbene (
, a neutral singlet carbocation-like electrophile with empty -orbital). - If
is used instead of , the product is Salicylic Acid.
3. 🌐 Ethers: Synthesis & Cleavage Mechanisms
3.1 Williamson Ether Synthesis ( )
- Condition for High Yield: Substrate
must be strictly or Methyl halide. - Trap: If
is a alkyl halide, the alkoxide acts as a strong base, and E2 elimination occurs to give an alkene!
3.2 Cleavage of Ethers with Hot Concentrated
- When both
and are or ( Mechanism): attacks the less hindered alkyl group:
- When one alkyl group is
, Benzyl, or Allyl ( Mechanism): - Cleavage proceeds via the stable carbocation $ o I^-$ attacks the
or benzyl group:
- Cleavage proceeds via the stable carbocation $ o I^-$ attacks the
- Anisole (
) with : - The
bond has partial double bond character $ o$ bond cleavage occurs strictly at :
- The