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Various carboxylic acid derivatives (such as acid chlorides, esters, and anhydrides) can be used for the acylation of amines to yield amides. The reaction requires two equivalents of amines. The first amine molecule functions as a nucleophile and attacks the carbonyl carbon to produce a tetrahedral intermediate. This is followed by the loss of the leaving group and restoration of the C=O bond.

Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary amide to a free amide. Amides are stable molecules that are less nucleophilic and basic than amines, making them useful functionalities in electrophilic aromatic substitutions. For instance, the direct bromination of aniline usually results in a tribrominated product as a result of the strongly activating amino group. However, if the amino group is first acylated and then brominated, a monobrominated product can be obtained.

Tags
AcylationAminesAmidesCarboxylic Acid DerivativesAcid ChloridesEstersAnhydridesNucleophileTetrahedral IntermediateBr nsted BaseElectrophilic Aromatic SubstitutionAnilineBromination

Aus Kapitel 19:

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19.20 : Amine zu Amiden: Acylierung von Aminen

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19.1 : Amine: Einführung

Amine

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19.2 : Nomenklatur der primären Amine

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19.3 : Nomenklatur der sekundären und tertiären Amine

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19.4 : Nomenklatur der Aryl und heterocyclischen Amine

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19.5 : Struktur der Amine

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19.6 : Physikalische Eigenschaften von Aminen

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19.7 : Basizität der aliphatischen Amine

Amine

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19.8 : Basizität der aromatischen Amine

Amine

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19.9 : Basizität von heterocyclischen aromatischen Aminen

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19.10 : NMR Spektroskopie von Aminen

Amine

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19.11 : Massenspektrometrie von Aminen

Amine

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19.12 : Herstellung von Aminen: Alkylierung von Ammoniak und Aminen

Amine

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19.13 : Herstellung von 1°-Aminen: Azid-Synthese

Amine

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19.14 : Herstellung von 1° Aminen: Gabriel-Synthese

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