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    Home > Medical News > Medical World News > The Instruction of 3-Chloro-6-phenyl-pyridazin-4-ol

    The Instruction of 3-Chloro-6-phenyl-pyridazin-4-ol

    • Last Update: 2023-05-08
    • Source: Internet
    • Author: User
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    3-Chloro-6-phenyl-pyridazin-4-ol is a chemical compound that is commonly used in various applications in the chemical industry.
    It is a yellowish solid that is soluble in water and other organic solvents.
    This compound is a derivative of pyridazine and has a distinctive odor.


    In the chemical industry, 3-chloro-6-phenyl-pyridazin-4-ol is used as a catalyst in various reactions.
    It is also used as a reagent in organic synthesis and as a ligand in coordination compounds.
    The compound is commonly used as a building block for the synthesis of other chemicals, and it is also used as a pharmaceutical intermediate.


    One of the most common applications of 3-chloro-6-phenyl-pyridazin-4-ol is in the production of agrochemicals.
    It is used as a catalyst in the synthesis of herbicides, insecticides, and fungicides.
    The compound is also used as a solvent in the production of various types of pesticides.


    Another application of 3-chloro-6-phenyl-pyridazin-4-ol is in the production of dyes and pigments.
    It is used as a catalyst in the synthesis of azo dyes, which are widely used in the textile industry.
    The compound is also used as a ligand in the synthesis of transition metal complexes, which are used as catalysts in the production of other chemicals.


    3-Chloro-6-phenyl-pyridazin-4-ol is also used in the production of pharmaceuticals.
    It is used as a reagent in the synthesis of various types of drugs, including anti-inflammatory drugs, antidepressants, and antipsychotics.
    The compound is also used as a ligand in the synthesis of metal complexes, which are used as anti-cancer drugs.


    The production of 3-chloro-6-phenyl-pyridazin-4-ol involves several steps, including the synthesis of pyridazine and its chlorination.
    The synthesis of pyridazine involves the reaction of ammonia and acetylene in the presence of a catalyst, such as sodium.
    The chlorination of pyridazine involves the addition of chlorine gas to pyridazine, which results in the formation of 3-chloro-6-phenyl-pyridazin-4-ol.


    The production of 3-chloro-6-phenyl-pyridazin-4-ol also involves the isolation and purification of the compound.
    This involves the use of various chemical methods, such as crystallization and chromatography.
    The purified compound is then used in various applications in the chemical industry.


    Overall, 3-chloro-6-phenyl-pyridazin-4-ol is an important chemical compound that is used in various applications in the chemical industry.
    It is used as a catalyst in the synthesis of other chemicals, as a reagent in organic synthesis, and as a ligand in coordination compounds.
    The compound is also used in the production of agrochemicals, dyes and pigments, and pharmaceuticals.
    Its production involves several steps, including the synthesis of pyridazine and its chlorination, and the isolation and purification of the compound.


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