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In the presence of an aqueous base and a halogen, primary amides can lose the carbonyl (as carbon dioxide) and undergo rearrangement to form primary amines. This reaction, called the Hofmann rearrangement, can produce primary amines (aryl and alkyl) in high yields without contamination by secondary and tertiary amines.

Figure1

In the Curtius rearrangement, acyl azides are converted into primary amines under thermal conditions, accompanied by the loss of gaseous N2 and CO2. The loss of nitrogen acts as a driving force to complete the reaction.

Figure2

The Hofmann and Curtius rearrangement reactions are applied in the synthesis of phentermine (an appetite-suppressant drug) and tranylcypromine (an antidepressant drug), respectively.

Figure3

If the substrates are optically active, both rearrangement reactions occur with retention of configuration.

Figure4

Tags

Hofmann RearrangementCurtius RearrangementPrimary Amine SynthesisPhentermine SynthesisTranylcypromine SynthesisRetention Of ConfigurationAqueous BaseHalogenAcyl AzideNitrogen LossCarbon Dioxide Loss

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19.18 : Preparation of 1° Amines: Hofmann and Curtius Rearrangement Overview

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19.1 : Aminas: Introducción

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19.2 : Nomenclatura de las aminas primarias

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19.3 : Nomenclatura de aminas secundarias y terciarias

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19.4 : Nomenclatura de aminas de arilo y heterocíclicas

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19.5 : Estructura de las aminas

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19.6 : Propiedades físicas de las aminas

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19.7 : Basicidad de las aminas alifáticas

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19.8 : Basicidad de las aminas aromáticas

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19.9 : Basicidad de las aminas aromáticas heterocíclicas

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19.10 : Espectroscopía de RMN de aminas

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19.11 : Espectrometría de masas de aminas

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19.12 : Preparación de aminas: alquilación de amoníaco y aminas

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19.13 : Preparación de 1° Aminas: Síntesis de Azidas

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19.14 : Preparación de 1° Aminas: Gabriel Síntesis

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