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Chemistry

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Organic Chemistry

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Aldehydes and Ketones

Wolff–Kishner Reduction Reaction Pathway

Description

Wolff–Kishner reduction converts aldehydes and ketones into alkanes. It replaces the carbonyl group with a methylene group. The reaction uses hydrazine and a base.

The method was independently discovered by N. Kishner in 1911 and L. Wolff in 1912. It is carried out in high-boiling solvents such a...

Transcript

Wolff–Kishner reduction transforms a carbonyl group into a methylene group through deoxygenation by replacing the oxygen atom with two hydrogen atoms.

The reaction is carried out at elevated temperatures, using a strong base and hydrazine.

The reduction mechanism has two parts: Formation of hydrazone and elimination of nitrogen.

Tags

Aldehyde Ketone ConversionHydrazine Base ReactionCarbonyl Methylene ConversionHigh Boiling SolventsEthylene GlycolImine Derivative FormationHydrazone LossProton Transfer ReactionsNitrogen Elimination