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    Home > Medical News > Medical World News > The Production Process of 5-HYDROXYMETHYLQUINOLINE

    The Production Process of 5-HYDROXYMETHYLQUINOLINE

    • Last Update: 2023-05-16
    • Source: Internet
    • Author: User
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    5-Hydroxymethylquinoline (5-HMQ) is a compound that is commonly used in the chemical industry as a precursor for the synthesis of a variety of different molecules.
    The production process for 5-HMQ involves several steps, including the preparation of the starting materials, the reaction of the starting materials to form the target compound, and the purification and isolation of the final product.


    The preparation of the starting materials involves the synthesis of a compound known as 3-methylquinoline, which is then treated with sodium hydroxide to form 3-methylquinoline-5-ol.
    The 3-methylquinoline-5-ol is then treated with an appropriate reagent to form 5-HMQ.


    The reaction of the starting materials to form 5-HMQ typically involves the use of a chemical reaction known as a Pinner reaction.
    In this reaction, the 3-methylquinoline-5-ol is treated with an α-haloketone in the presence of a Lewis acid catalyst, such as aluminum chloride.
    The reaction produces the desired 5-HMQ compound, as well as a byproduct, which is typically a halogenated derivative of the starting materials.


    Once the 5-HMQ has been synthesized, it is typically purified and isolated through a series of steps.
    This may involve the use of chromatography techniques, such as column chromatography or high-performance liquid chromatography (HPLC), to separate the 5-HMQ from any impurities that may be present.
    The purified 5-HMQ may then be collected and crystallized from a suitable solvent, such as ethanol or water, to obtain a pure sample of the target compound.


    In conclusion, the production process for 5-hydroxymethylquinoline involves several steps, including the preparation of the starting materials, the reaction of the starting materials to form the target compound, and the purification and isolation of the final product.
    The process typically involves the use of chemical reactions and purification techniques to obtain a pure sample of the target compound, which can then be used as a precursor for the synthesis of a variety of different molecules in the chemical industry.


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