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Cope elimination reaction involves the conversion of tertiary amines to alkene using hydrogen peroxide under thermal conditions, as depicted in figure 1.

Figure1

Figure 1. The Cope elimination reaction

The mechanism of the reaction is illustrated in Figure 2. Here, the oxidation of tertiary amines by hydrogen peroxide yields amine oxide. Subsequently, the thermally induced elimination of the N,N-dimethyl hydroxylamine as leaving group occurs. However, it produces a less substituted alkene as the major product. In this process, amine oxide, in the role of a base, follows the syn stereochemistry and proceeds through a cyclic transition state.

Figure2

Figure 2. The mechanism of the Cope elimination reaction

Cope elimination is helpful for the synthesis of reactive/sensitive alkenes because the reaction occurs under mild conditions.

Tags
Cope EliminationTertiary AminesAlkenesHydrogen PeroxideThermal ConditionsAmine OxideNN dimethyl HydroxylamineSyn StereochemistryCyclic Transition StateAlkene SynthesisMild Conditions

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19.22 : Amine zu Alkenen: Cope-Eliminierung

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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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