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Oximes can be reduced to primary amines using catalytic hydrogenation, hydride reduction, or sodium metal reduction. The reduction of aliphatic and aromatic nitro compounds to primary amines takes place by either catalytic hydrogenation or by using active metals like Fe, Zn, and Sn in the presence of an acid.

Though catalytic hydrogenation can reduce nitrobenzenes, the reduction is nonselective in the presence of other functional groups. For instance, if nitrobenzene contains an aldehyde group, both nitro and aldehyde groups will get reduced.

Conversion of the nitro group to the amino group while retaining the aldehydic group can be achieved through acidic reduction using SnCl2, followed by treatment with base.

The reduction of nitrobenzene and its derivatives are useful in industries that manufacture various aniline dyes. This process also has medicinal importance—for example, the synthesis of topical anesthetic benzocaine.

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OximesNitro CompoundsAminesReductionCatalytic HydrogenationHydride ReductionSodium Metal ReductionFeZnSnAcidNitrobenzeneAldehydesAniline DyesBenzocaine

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19.15 : Preparation of Amines: Reduction of Oximes and Nitro Compounds

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19.1 : Amines: Introduction

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19.2 : Nomenclature of Primary Amines

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19.3 : Nomenclature of Secondary and Tertiary Amines

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19.4 : Nomenclature of Aryl and Heterocyclic Amines

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19.5 : Structure of Amines

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19.6 : Physical Properties of Amines

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19.7 : Basicity of Aliphatic Amines

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19.8 : Basicity of Aromatic Amines

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19.9 : Basicity of Heterocyclic Aromatic Amines

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19.10 : NMR Spectroscopy Of Amines

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19.11 : Mass Spectrometry of Amines

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19.12 : Preparation of Amines: Alkylation of Ammonia and Amines

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19.13 : Preparation of 1° Amines: Azide Synthesis

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19.14 : Preparation of 1° Amines: Gabriel Synthesis

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