Kinetic Enolates

Kinetic enolates are enolate ions formed when a carbonyl compound is deprotonated at the site that reacts fastest, making them valuable tools for controlling carbon–carbon bond formation in organic chemistry. They typically arise under irreversible, kinetic-control conditions, such as treatment with a strong, bulky, nonnucleophilic base at low temperature, which removes the more accessible α-hydrogen before equilibration can favor the more substituted enolate. Chemists use kinetic enolates in alkylation, aldol, and related reactions to direct α-functionalization and construct molecular complexity, while comparing them with thermodynamic enolates helps explain how temperature, base, solvent, and reaction reversibility influence product selectivity.

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JoVE Core - Organic Chemistry

Types of Enols and Enolates

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2025

Aldehydes and ketones form enols, although only about 1% of the enol is present at the equilibrium for simple monocarbonyl compounds. The enol form is undetectable for acetaldehyde, present as only 1.5 × 10−4 % of acetone, and present as only 1.2% of cyclohexanone. Two kinds of regioisomeric enols are possible for unsymmetrical ketones, and their net composition is 1% at equilibrium. This instability is due to the lower bond energy of C=C than the C=O group. The additional instability of enols...

Reactivity of Enols

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2023

Enols are a class of compounds where a hydroxyl group is attached to a carbon–carbon double bond, which implies that it is a vinyl alcohol. A carbonyl compound with an α hydrogen undergoes keto–enol tautomerism and remains in equilibrium with its tautomer, the enol form. Usually, the keto tautomer is present in a higher concentration than the enol tautomer due to the higher bond energy of C=O compared to C=C. Moreover, the direction of the keto–enol equilibrium is governed by factors like...

Enolate Mechanism Conventions

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2023

When a carbonyl compound is treated with a strong base, the α position gets deprotonated to give a resonance-stabilized intermediate called an enolate. Enolates are ambident nucleophiles because they possess two nucleophilic sites that can attack an electrophile owing to the delocalization of the negative charge between the α carbon and oxygen atoms. When the oxygen atom attacks an electrophile, it is called O-attack, whereas electrophilic attack via the α carbon is known as C-attack. C-attack...

Reactivity of Enolate Ions

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2023

Enolate ions are formed by the acid–base reaction of a carbonyl compound with a base. This leads to deprotonation of the α hydrogen atom, leading to a resonance-stabilized enolate ion where one of the contributing structures is an oxyanion, which imparts additional stability. Therefore, the proton on the α carbon is more acidic in nature than that of other sp3-hybridized C–H bonds but less acidic than those in O–H bonds where the negative charge in the conjugate base is localized on the oxygen...

Regioselective Formation of Enolates

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2023

As depicted in the figure below, the unsymmetrical ketones can form two possible enolates: less substituted or more substituted enolates. Usually, the thermodynamic enolates are formed from the more substituted α-carbon atom, while the kinetic enolates are formed faster by deprotonation from the less substituted position. The thermodynamic enolates have lower energy, so they are more stable. But the energy required to form kinetic enolates is less. This regioselectivity in enolate formation...

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