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15.22 : Crossed Aldol Reaction Using Weak Bases

This lesson deals with the crossed aldol reaction using weak bases. The self-condensation of an aldehyde having α hydrogen is prevented by adding it slowly to a mixture of formaldehyde and weak bases like hydroxide and alkoxide. Upon slow addition of the aldehyde, the base deprotonates the α carbon of the aldehyde to form the corresponding enolate. The enolate subsequently attacks the formaldehyde to form a single crossed product. Figure 1 depicts the aforementioned reaction.

Figure1

Figure 1. The formation of a single crossed product

In a reaction between a β-keto ester and a ketone, the β-keto ester with lower pKa is a stronger acid than the ketone. Hence, a weak base like sodium ethoxidepreferentially deprotonates the β-keto ester to form an enolate. The enolate then attacks the ketone to form the corresponding crossed aldol product in good yield. Figure 2 shows an example of the crossed aldol reaction using a weak base.

Figure2

Figure 2. The formation of the crossed aldol product

Tags

Crossed Aldol ReactionWeak BaseAldehydeFormaldehydeEnolateketo EsterKetoneSodium EthoxideCrossed Aldol Product

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15.22 : Crossed Aldol Reaction Using Weak Bases

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15.1 : Reattività degli Enoli

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15.2 : Reattività degli ioni enolato

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15.3 : Tipi di enoli ed enolati

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15.4 : Convenzioni del Meccanismo Enolato

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15.5 : Formazione regioselettiva di enolati

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15.10 : α-alogenazione dei derivati dell'acido carbossilico: panoramica

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15.11 : α-Bromurazione degli acidi carbossilici: reazione di Hell-Volhard-Zelinski

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15.12 : Reazioni dei composti α-alocarbonilici: sostituzione nucleofila

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15.13 : Nitrosazione degli Enoli

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15.14 : Formazione del legame C-C: Panoramica sulla condensazione aldolica

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