echemi logo
Product
  • Product
  • Supplier
  • Inquiry
    Home > Active Ingredient News > Active Ingredient Products News > The Synthetic Routes of Metopimazine

    The Synthetic Routes of Metopimazine

    • Last Update: 2023-05-07
    • Source: Internet
    • Author: User
    Search more information of high quality chemicals, good prices and reliable suppliers, visit www.echemi.com

    Metopimazine is a synthetic chemical compound that is used in various applications within the chemical industry.
    It is commonly used as a intermediate in the production of agricultural chemicals, pharmaceuticals, and other fine chemicals.
    The synthetic routes to metopimazine can be broadly classified into two categories, namely synthesis via nitro-substitution reaction and synthesis via reducibility.


    Synthesis via Nitro-substitution Reaction:


    The nitro-substitution reaction is one of the most common methods for the synthesis of metopimazine.
    This reaction involves the use of nitrous acid or nitric acid to introduce a nitro group into an aromatic compound.
    The aromatic compound is then treated with a reducing agent, such as lithium aluminum hydride (LiAlH4), to reduce the nitro group to an amine group.
    The resulting compound is then treated with an appropriate reagent to form metopimazine.


    One of the advantages of this synthesis route is that it allows for the ready introduction of a functional group onto an aromatic compound, which can be used in a variety of applications.
    Additionally, the use of reducing agents allows for the selective reduction of the nitro group, resulting in a high yield of the desired product.


    Synthesis via Reducability:


    Another method for the synthesis of metopimazine is via reducibility.
    This reaction involves the use of a reducing agent to convert a nitro compound into an amine.
    The reducing agent used is typically a metal hydride, such as lithium aluminum hydride (LiAlH4), which reduces the nitro group to an amine group.
    The resulting compound is then treated with an appropriate reagent to form metopimazine.


    One advantage of this synthesis route is that it allows for the synthesis of metopimazine from simpler starting materials, which can be more economical and easier to handle.
    Additionally, the use of reducing agents allows for the selective reduction of the nitro group, resulting in a high yield of the desired product.


    Applications of Metopimazine:


    Metopimazine is commonly used as an intermediate in the production of agricultural chemicals and pharmaceuticals.
    It can also be used in the production of other fine chemicals, such as dyes, fragrances, and flavorings.


    In agriculture, metopimazine is used as a nitrogen fixation inhibitor, which helps to reduce the amount of nitrogen fixed by bacteria in the soil.
    This can be useful in situations where it is necessary to control the growth of certain types of bacteria, such as in the production of crops that are susceptible to bacterial diseases.


    In the pharmaceutical industry, metopimazine is used as an intermediate in the production of certain types of drugs, such as anti-depressants and anti-inflammatory drugs.
    It is also used in the production of certain types of dyes and fragrances.


    In conclusion, the synthetic routes to metopimazine are varied and can be broadly classified into nitro-substitution reaction and reducibility.
    The compound is commonly used as an intermediate in the production of agricultural chemicals, pharmaceuticals and other fine chemicals.
    Due to its unique structure and properties, it has a wide range of applications in different industries.


    This article is an English version of an article which is originally in the Chinese language on echemi.com and is provided for information purposes only. This website makes no representation or warranty of any kind, either expressed or implied, as to the accuracy, completeness ownership or reliability of the article or any translations thereof. If you have any concerns or complaints relating to the article, please send an email, providing a detailed description of the concern or complaint, to service@echemi.com. A staff member will contact you within 5 working days. Once verified, infringing content will be removed immediately.

    Contact Us

    The source of this page with content of products and services is from Internet, which doesn't represent ECHEMI's opinion. If you have any queries, please write to service@echemi.com. It will be replied within 5 days.

    Moreover, if you find any instances of plagiarism from the page, please send email to service@echemi.com with relevant evidence.