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    Home > Active Ingredient News > Drugs Articles > The Instruction of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime)

    The Instruction of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime)

    • Last Update: 2023-05-11
    • Source: Internet
    • Author: User
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    The chemical compound known as 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) is a synthetic chemical that has found a wide range of applications in the chemical industry.
    This compound is known for its unique chemical properties, which make it highly sought after for various industrial processes.
    In this article, we will discuss the instruction of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) and its applications in the chemical industry.


    Instruction of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime):


    1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) is synthesized through a series of chemical reactions that involve several intermediate compounds.
    The synthesis of this compound typically involves the following steps:


    Step 1: Preparation of Benzaldehyde: Benzaldehyde is prepared by the oxidation of benzene in the presence of an oxidizing agent such as hydrogen peroxide or sodium hypophosphite.
    The resulting benzaldehyde is then used as a starting material for the synthesis of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime).


    Step 2: Bromination of Benzaldehyde: The benzaldehyde obtained from the previous step is brominated using a reactive bromine gas to form 4-brombenzaldehyde.
    The reaction is typically carried out in the presence of a solvent such as acetonitrile or benzene to facilitate the reaction.


    Step 3: Nitration of 4-Brombenzaldehyde: 4-Brombenzaldehyde obtained from the previous step is treated with a mixture of nitric and sulfuric acids to form 4-nitrobenzaldehyde.
    The reaction is typically carried out in the presence of a solvent such as water to facilitate the reaction.


    Step 4: Thiosulfation of 4-Nitrobenzaldehyde: 4-Nitrobenzaldehyde obtained from the previous step is treated with thioacetic acid and hydrogen sulfide to form 4-[4-(nitrothio)phenyl]-1,2-octanedione.
    The reaction is typically carried out in the presence of a solvent such as acetonitrile to facilitate the reaction.


    Step 5: Oxime Formation: 4-[4-(Nitrothio)phenyl]-1,2-octanedione obtained from the previous step is treated with sodium hydroxide and hydrogen peroxide to form 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime).
    The reaction is typically carried out in the presence of a solvent such as water to facilitate the reaction.


    Applications of 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) in the Chemical Industry:


    1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) has a wide range of applications in the chemical industry due to its unique chemical properties.
    Some of the key applications of this compound include:


    1. As an intermediate for the production of dyes: 1-[4-(Phenylthio)phenyl]-1,2-octanedione 2-(O-benzoyloxime) can be used as an intermediate for the production of various dyes.
      The compound can be used in the production of reactive dyes, direct dyes, and acid dyes.
    2. As a catalyst for polyester production: 1-[4-(Phenylthio)phenyl]-1,
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