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    Home > Medical News > Medical World News > The Synthetic Routes of 2-(METHYLTHIO)-5-(TRIBUTYLSTANNYL)PYRIMIDINE

    The Synthetic Routes of 2-(METHYLTHIO)-5-(TRIBUTYLSTANNYL)PYRIMIDINE

    • Last Update: 2023-05-05
    • Source: Internet
    • Author: User
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    2-(Methylthio)-5-(tributylstannyl)pyrimidine is an organic compound that is commonly used in various chemical reactions in the industry.
    This compound is synthesized through different routes, which are selected based on the desired product and the reaction conditions.


    One of the most widely used routes for synthesizing 2-(methylthio)-5-(tributylstannyl)pyrimidine is through the reaction of methyl iodide with sodium hydride in the presence of benzaldehyde.
    The reaction involves the formation of a Grignard reagent, which is then treated with tributyl tin chloride in the presence of a Lewis acid catalyst, such as aluminum chloride.
    The reaction produces 2-(methylthio)-5-(tributylstannyl)pyrimidine, which can then be purified and used in further reactions.


    Another route for synthesizing 2-(methylthio)-5-(tributylstannyl)pyrimidine involves the reaction of methyl iodide with a secondary amine, such as dimethylamine or diethylamine.
    The reaction produces a methylated amine, which is then treated with sodium hydride and tributyl tin chloride in the presence of a Lewis acid catalyst, such as aluminum chloride.
    The reaction produces 2-(methylthio)-5-(tributylstannyl)pyrimidine, which can then be purified and used in further reactions.


    In addition to the above routes, 2-(methylthio)-5-(tributylstannyl)pyrimidine can also be synthesized through other methods, such as the reaction of methyl iodide with sodium hydride in the presence of aromatic compounds or the reaction of methyl iodide with a thiol in the presence of a Lewis acid catalyst.
    The choice of route depends on the availability of the starting materials, the desired product, and the reaction conditions.


    The synthetic routes of 2-(methylthio)-5-(tributylstannyl)pyrimidine are important in the chemical industry because this compound is commonly used as a building block for the synthesis of other organic compounds.
    For example, this compound can be used as a precursor for the synthesis of antibiotics, insecticides, and other chemicals that are used in various industries.


    In conclusion, 2-(methylthio)-5-(tributylstannyl)pyrimidine is an important organic compound that is commonly used in the chemical industry.
    There are several synthetic routes for the synthesis of this compound, and the choice of route depends on the desired product and the reaction conditions.
    This compound is an important building block for the synthesis of other organic compounds and is widely used in various industries.


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