echemi logo
Product
  • Product
  • Supplier
  • Inquiry
    Home > Medical News > Medical World News > The Synthetic Routes of Isoquinolin-3-ylmethanamine

    The Synthetic Routes of Isoquinolin-3-ylmethanamine

    • Last Update: 2023-05-17
    • Source: Internet
    • Author: User
    Search more information of high quality chemicals, good prices and reliable suppliers, visit www.echemi.com

    In the world of organic chemistry, the synthesis of complex molecules is a crucial process.
    One such molecule is Isoquinolin-3-ylmethanamine, which has found application in various fields including pharmaceuticals, materials science, and agriculture.
    The synthesis of Isoquinolin-3-ylmethanamine has been the subject of extensive research in the chemical industry, with numerous synthetic routes having been developed over the years.
    In this article, we will discuss some of the most commonly used synthetic routes for the synthesis of Isoquinolin-3-ylmethanamine.


    1. Hydrogenation of Nitrobenzene

    The hydrogenation of nitrobenzene is one of the most straightforward methods for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, nitrobenzene is treated with hydrogen gas in the presence of a catalyst such as palladium on barium oxide.
    The hydrogenation reaction results in the conversion of nitrobenzene to Isoquinolin-3-ylmethanamine.
    This route is highly efficient, with a yield of almost 100%.


    1. Williamson Ether Synthesis

    The Williamson Ether Synthesis is another commonly used synthetic route for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, bromoethane is treated with sodium hydroxide to form a sodium bromide, which is then reacted with potassium hydroxide and calcium oxide to form an ether.
    The ether is then treated with chloroform and a base, such as sodium hydroxide, to yield Isoquinolin-3-ylmethanamine.
    This route is highly efficient, with a yield of almost 90%.


    1. Mannich Reaction

    The Mannich reaction is another commonly used synthetic route for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, formaldehyde, benzaldehyde, and a primary amine are reacted in the presence of an acid catalyst such as sulfuric acid.
    The reaction results in the formation of Isoquinolin-3-ylmethanamine.
    This route is highly versatile, with the choice of reactants allowing for the synthesis of a wide range of isoquinolinylmethylamines.


    1. Reduction of Nitrosobenzene

    The reduction of nitrosobenzene is another synthetic route for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, nitrosobenzene is treated with a reducing agent such as lithium aluminum hydride to yield Isoquinolin-3-ylmethanamine.
    This route is highly efficient, with a yield of almost 90%.


    1. Direct Amination of Benzene

    The direct amination of benzene is another method for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, benzene is treated with an ammonia solution and a catalyst such as Raney nickel to yield Isoquinolin-3-ylmethanamine.
    This route is highly efficient, with a yield of almost 80%.


    1. Reduction of Nitrobenzene with Hydrazine

    The reduction of nitrobenzene with hydrazine is a highly efficient and cost-effective method for the synthesis of Isoquinolin-3-ylmethanamine.
    In this process, nitrobenzene is treated with hydrazine in the presence of a catalyst such as palladium on barium oxide.
    The reaction results in the formation of Isoquinolin-3-ylmethanamine.
    This route is highly efficient, with a yield of almost 90%.


    In


    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.