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18.23 : Hydrolysis of Chlorobenzene to Phenol: Dow Process

Simple aryl halides do not react with nucleophiles under normal conditions. However, the reaction can proceed under drastic conditions involving high temperatures and high pressureto give the substituted products. For example,chlorobenzene is converted tophenol usingaqueous sodium hydroxide at 350 °Cunder high pressure by the Dow process. The reaction follows an elimination-addition mechanism involving a benzyne intermediate. Here, the chloride ion is eliminated to generate the benzyne intermediate. The benzyne intermediate then reacts with the base, followed byan acid workup thatgenerates phenol as the final product.

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HydrolysisChlorobenzenePhenolDow ProcessAryl HalidesNucleophilesHigh TemperatureHigh PressureElimination additionBenzyne IntermediateSodium HydroxideAcid Workup

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18.23 : Hydrolysis of Chlorobenzene to Phenol: Dow Process

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18.1 : NMR Spectroscopy of Benzene Derivatives

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18.2 : Reactions at the Benzylic Position: Oxidation and Reduction

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18.3 : Reactions at the Benzylic Position: Halogenation

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18.4 : Electrophilic Aromatic Substitution: Overview

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18.5 : Electrophilic Aromatic Substitution: Chlorination and Bromination of Benzene

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18.6 : Electrophilic Aromatic Substitution: Fluorination and Iodination of Benzene

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18.7 : Electrophilic Aromatic Substitution: Nitration of Benzene

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18.8 : Electrophilic Aromatic Substitution: Sulfonation of Benzene

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18.9 : Electrophilic Aromatic Substitution: Friedel–Crafts Alkylation of Benzene

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18.10 : Electrophilic Aromatic Substitution: Friedel–Crafts Acylation of Benzene

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18.11 : Limitations of Friedel–Crafts Reactions

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18.12 : Directing Effect of Substituents: ortho–para-Directing Groups

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18.13 : Directing Effect of Substituents: meta-Directing Groups

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18.14 : ortho–para-Directing Activators: –CH3, –OH, –⁠NH2, –OCH3

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