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    Home > Medical News > Medical World News > The Instruction of 8-BROMO-2-(TRIFLUOROMETHYL)QUINOLIN-4-OL

    The Instruction of 8-BROMO-2-(TRIFLUOROMETHYL)QUINOLIN-4-OL

    • Last Update: 2023-05-09
    • Source: Internet
    • Author: User
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    8-Bromo-2-(trifluoromethyl)quinolin-4-ol is an important organic compound in the chemical industry.
    It is widely used as a building block for the synthesis of various chemicals, pharmaceuticals, and agrochemicals.
    Its unique structure and properties make it a versatile compound that can be transformed into a variety of products through different chemical reactions.
    In this article, we will explore the instruction of 8-bromo-2-(trifluoromethyl)quinolin-4-ol and its applications in the chemical industry.


    8-Bromo-2-(trifluoromethyl)quinolin-4-ol, also known as 2-bromo-8H-quinolin-4-ol, is a white to off-white solid with a melting point of 165-170°C.
    It is slightly soluble in water, but highly soluble in organic solvents such as ethanol and dichloromethane.
    The compound has a strong, unpleasant odor, similar to that of bleach.


    The chemical structure of 8-bromo-2-(trifluoromethyl)quinolin-4-ol contains a six-membered quinoline ring, which is substituted by a bromine atom at the 8-position and a trifluoromethyl group at the 2-position.
    The presence of these functional groups gives the compound unique physical and chemical properties, which make it suitable for a variety of applications.


    One of the main applications of 8-bromo-2-(trifluoromethyl)quinolin-4-ol is as a building block for the synthesis of other chemicals and pharmaceuticals.
    For example, it can be converted into other quinoline derivatives through various chemical reactions, such as substitution, condensation, and ring-opening reactions.
    This can result in the formation of compounds with different properties and uses, such as antibacterial, antifungal, and anti-inflammatory agents.


    8-Bromo-2-(trifluoromethyl)quinolin-4-ol can also be used as an intermediate in the production of agrochemicals, such as herbicides and pesticides.
    Its ability to inhibit plant growth and kill weeds makes it an effective ingredient in weed-killing formulations.
    In addition, its toxicity to insects and other pests makes it a useful component in pesticides for controlling pest populations in agricultural and horticultural settings.


    Another application of 8-bromo-2-(trifluoromethyl)quinolin-4-ol is in the production of catalysts and catalyst supports.
    Its unique structure and chemical properties make it a useful building block for the synthesis of catalysts and catalyst supports with specific properties and functions.
    For example, it can be functionalized to contain metal or metal-organic framework groups, which can improve the efficiency and selectivity of the catalytic reactions.


    In addition to these applications, 8-bromo-2-(trifluoromethyl)quinolin-4-ol can also be used as an intermediate in the production of polymers, plastics, and other synthetic materials.
    Its unique structure and properties can help improve the performance and properties of these materials, making them more durable and versatile.


    The synthesis of 8-bromo-2-(trifluoromethyl)quinolin-4-ol typically involves the reaction of 2-bromo-5-fluoropyridine with 2-chloro-6-oxo-1,2,3,4-tetrahydroquinoxaline.
    The reaction is typically carried out in the presence of a solvent, such as acetonitrile or DMF, and a base, such as sodium carbon


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