Chemistry · Ch 8 — Aldehydes, Ketones and Carboxylic Acids
Summary
Summary
- Carbonyl group () is the functional core: aldehydes have it at chain end (), ketones within chain ().
- Nomenclature: suffix -al for aldehydes, -one for ketones; carboxylic acids use -oic acid ().
- Preparation:
- Aldehydes from oxidation of primary alcohols (PCC, ), Rosenmund reduction (), or hydration of alkynes (Markovnikov with ).
- Ketones from oxidation of secondary alcohols, Friedel–Crafts acylation, or hydration of alkynes (anti-Markovnikov via then ).
- Carboxylic acids from oxidation of primary alcohols/aldehydes, hydrolysis of nitriles (), or Grignard with .
- Nucleophilic addition (aldehydes/ketones): is polar; , , derivatives add to form cyanohydrins, bisulfite adducts, imines.
- Aldehydes are more reactive than ketones (less steric hindrance, greater on carbon).
- Reduction: or gives alcohols; Clemmensen () or Wolff–Kishner () reduces to .
- Oxidation:
- Aldehydes oxidise to acids (Tollens’ test: silver mirror; Fehling’s test: red ).
- Ketones resist mild oxidation; strong oxidants cleave bonds.
- Alpha-hydrogen reactions: enolate formation leads to aldol condensation (crossed or self), haloform reaction ( gives ).
- Carboxylic acids: acidic () due to resonance-stabilised conjugate base; form salts, esters, amides, acid chlorides, anhydrides.
- Decarboxylation: loses on heating with soda lime () or via Hunsdiecker (Ag salt + ).
- Distinguishing tests: …