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The Hinsberg test is a method to identify primary, secondary and tertiary amines, named after its pioneer, Oscar Hinsberg. Here, amines are treated with benzenesulfonyl chloride, also known as the Hinsberg reagent, in the presence of an excess of aqueous base, followed by acidification. Based on the nature of the amines, differentchanges are observed.

Generally, a primary amine reacts with the Hinsberg reagent to produce an N-substituted benzenesulfonamide. The electron-withdrawing sulfonyl group makes the N–H proton acidic, enablingready deprotonation in a base to form awater-soluble salt. Further acidification of the clear solution results in the precipitation of anN-substituted benzenesulfonamide.

Secondary amines generate an insolubleN,N-disubstituted sulfonamideupon reaction with benzenesulfonyl chloride. Due to the lack of an N–H proton, the compound does not reactwith the base. Tertiary amines do not react with the Hinsberg reagent. However, upon acidification, tertiary amines are protonated and become water-soluble.

Figure1

Tags
Hinsberg TestAminesSulfonamidesPrimary AmineSecondary AmineTertiary AmineBenzenesulfonyl ChlorideHinsberg ReagentN substituted BenzenesulfonamideNN disubstituted SulfonamideProtonation

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19.29 : Amine zu Sulfonamiden: Der Hinsberg-Test

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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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