Chemistry > Aldehydes and Ketones > 13.0 Addition of Oxygen Nucleophile

  Aldehydes and Ketones
    1.0 Introduction
    2.0 Methods of Preparation
    3.0 Physical Properties
    4.0 Relative Reactivities of Carbonyl Compounds
    5.0 Addition of Carbon Nucleophiles
    6.0 Haloform Reactions
    7.0 Aldol Condensations
    8.0 Claisen Condensation
    9.0 Intramolecular Claisen Condensation
    10.0 Cannizzaro Reaction
    11.0 Reformatsky Reaction
    12.0 Addition of Nitrogen Nucleophiles
    13.0 Addition of Oxygen Nucleophile
    14.0 Addition of Sulphur Nucleophile
    15.0 Oxidation of Aldehydes And Ketones
    16.0 Reduction of Aldehyde and Ketones
    17.0 Other Reactions Of Aldehydes And Ketones

13.2 Mechanism
Water is a poor nucleophile, therefore, adds relatively slowly to a carbonyl group, but the rate of the reaction can be increased by an acid catalyst. Notice that the catalyst has no effect on the position of the equilibrium. The catalyst affects the rate at which an aldehyde or a ketone is converted to the hydrate.

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