Aldehydes, Ketones and Carboxylic Acids

Chemistry · Class 12

Simulation · Chemistry · Class 12

Aldol builder

From the lesson α-Hydrogen reactions and uses in Aldehydes, Ketones and Carboxylic Acids. Change the values and watch what happens.

Aldol builderChemistry · Class 12

The idea behind it

NCERT §8.4–8.5

  • Hydrogens on the carbon next to C=O (α-hydrogens) are acidic: the carbonyl group withdraws electrons strongly, and the conjugate base is resonance-stabilised.
  • Aldol reaction: an aldehyde or ketone with at least one α-hydrogen, with dilute alkali as catalyst, gives a β-hydroxy aldehyde (aldol) or β-hydroxy ketone (ketol). Ethanal gives 3-hydroxybutanal.
  • The aldol or ketol loses water easily to give an α,β-unsaturated carbonyl compound, the aldol condensation product: 3-hydroxybutanal → but-2-enal. Ketones are included under the same name.
  • Cross aldol condensation uses two different aldehydes and/or ketones. If both have α-hydrogens, four products form: ethanal with propanal gives but-2-enal, 2-methylpent-2-enal, pent-2-enal and 2-methylbut-2-enal.
  • Cannizzaro reaction: an aldehyde with no α-hydrogen, heated with concentrated alkali, disproportionates. One molecule is reduced to the alcohol and another oxidised to the carboxylic acid salt: 2HCHO + conc. KOH → CH₃OH + HCOOK.
  • In aromatic aldehydes and ketones the carbonyl group deactivates the ring and directs electrophiles to the meta position.
  • Formalin, a 40% solution of formaldehyde, preserves biological specimens; formaldehyde also makes bakelite (a phenol-formaldehyde resin) and urea-formaldehyde glues.
  • Acetaldehyde is the raw material for drugs, polymers, vinyl acetate, ethyl acetate and, mainly, acetic acid. Perfume and dye makers use benzaldehyde; acetone and ethyl methyl ketone are industrial solvents; camphor, acetophenone, vanillin and butyraldehyde are prized for their smell and taste.