echemi logo
Product
  • Product
  • Supplier
  • Inquiry
    Home > Medical News > Medical World News > The Applications of 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)-

    The Applications of 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)-

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

    3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- is a compound that is commonly used in the chemical industry due to its unique properties and versatile applications.
    In this article, we will explore the various uses of this compound and its significance in the chemical industry.


    3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- is a heterocyclic compound that belongs to the pyridine class of compounds.
    It is commonly used as a building block for the synthesis of various organic compounds, as a catalyst, and as a ligand in coordination compounds.
    It has a distinctive aromatic odor and is slightly soluble in water, but highly soluble in organic solvents.


    One of the most common applications of 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- is in the production of chemical intermediates and reagents.
    This compound is used as a starting material in the synthesis of various organic compounds such as pharmaceuticals, agrochemicals, and dyes.
    It can also be used as a catalyst in various chemical reactions, including polymerization and hydrogenation reactions.


    Another application of 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- is in the production of pigments and dyes.
    This compound can be used as a precursor for the synthesis of azo dyes, which are widely used in the textile industry.
    It can also be used as a catalyst in the polymerization of monomers, which can lead to the production of synthetic resins and plastics.


    3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- can also be used in the production of various pharmaceuticals and agrochemicals.
    It can be used as a catalyst in the synthesis of various drugs, and it can also be used as a ligand in coordination compounds, which can be used as catalysts in various chemical reactions.


    In addition to its applications in the chemical industry, 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- has also been studied for its potential biological activities.
    It has been shown to have antibacterial, antifungal, and anti-inflammatory properties, which make it a potential candidate for the development of new drugs.


    In conclusion, 3-Pyridinamine, 2-methoxy-N-(1-methylethyl)- is a versatile compound with a wide range of applications in the chemical industry.
    It is used as a building block for the synthesis of various organic compounds, as a catalyst in various chemical reactions, and as a ligand in coordination compounds.
    It is also used in the production of pigments and dyes, pharmaceuticals, and agrochemicals.
    Its unique properties and potential biological activities make it a valuable compound in the chemical industry.


    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.