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Nitrous acid is a relatively weak and unstable acid prepared in situ by the reaction of sodium nitrite and cold, dilute hydrochloric acid. In an acidic solution, the nitrous acid undergoes protonation when it loses water to form a nitrosonium ion—an electrophile. Nitrous acid reacts with primary amines to give diazonium salts. The reaction is called diazotization of primary amines.

Figure1

Figure 1. The mechanism of the diazotization reaction of primary amines.

As illustrated in Figure 1, in the mechanism of the reaction, a primary amine attacks as the nucleophile on the nitrosonium ion. The subsequent deprotonation yields an N-nitrosamine. Next, the N-nitrosamine readily undergoes keto-enol tautomerism to give a diazotic acid. Protonation of the diazotic acid followed by water loss results in the formation of diazonium ions. The aliphatic diazonium ions formed are extremely unstable and readily decompose to form a carbocation by releasing molecular nitrogen even at 0 °C, which is a good and stable leaving group.

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AminesDiazonium SaltsDiazotizationNitrous AcidSodium NitriteElectrophileNucleophileN nitrosamineKeto enol TautomerismDiazotic AcidDiazonium IonsAliphatic Diazonium IonsCarbocationMolecular Nitrogen

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19.24 : 1° Amine zu Diazonium- oder Aryldiazoniumsalzen: Diazotierung mit NaNO2 - Mechanismus

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19.1 : Amine: Einführung

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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

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19.8 : Basizität der aromatischen Amine

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19.9 : Basizität von heterocyclischen aromatischen Aminen

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19.10 : NMR Spektroskopie von Aminen

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19.11 : Massenspektrometrie von Aminen

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19.12 : Herstellung von Aminen: Alkylierung von Ammoniak und Aminen

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

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19.14 : Herstellung von 1° Aminen: Gabriel-Synthese

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