2 Amino 6 Methylsulfonylbenzothiazole
quinoline thiophene imidazole thiazole

2-Amino-6-methylsulfonylbenzothiazole

    Specifications

    HS Code

    304623

    Chemical Formula C8H8N2O2S2
    Molecular Weight 228.3
    Appearance Solid (usually white to off - white powder)
    Melting Point Typically in a certain temperature range (data may vary, e.g., around 180 - 190°C)
    Solubility In Water Poorly soluble in water
    Solubility In Organic Solvents Soluble in some organic solvents like DMSO, DMF
    Pka There are acidic and basic sites, specific pKa values can be determined experimentally for each site
    Density Data - specific value can be obtained from experimental measurement
    Stability Stable under normal storage conditions, but may react with strong oxidizing or reducing agents

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    General Information
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    Frequently Asked Questions

    As a leading 2-Amino-6-methylsulfonylbenzothiazole supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the main uses of 2-Amino-6-methylsulfonylbenzothiazole?
    2-Amino-6-methylsulfonylbenzothiazole is an organic compound that has important uses in many fields.
    First, in the field of medicine, it can be used as a key intermediate for the creation of antibacterial, anti-inflammatory and anti-tumor drugs. Due to its unique chemical structure, it can interact with specific targets in organisms and exhibit good biological activity. For example, some antibacterial drugs developed based on this compound can effectively inhibit the growth and reproduction of bacteria, providing a powerful means for the treatment of bacterial infections.
    Second, in the field of pesticides, 2-amino-6-methylsulfonylbenzothiazole also plays an important role. The pesticide prepared from it has multiple effects such as insecticidal, bactericidal and weeding. It can precisely act on the specific physiological processes of pests, bacteria and weeds, so as to achieve the purpose of controlling the growth of pests and weeds, and help agricultural harvest.
    Furthermore, in the field of materials science, this compound also has outstanding performance. It can participate in the synthesis of high-performance polymer materials, endowing the materials with properties such as excellent thermal stability and mechanical properties. For example, in the preparation of some special engineering plastics, the addition of this compound can significantly improve the comprehensive properties of the material, making it widely used in high-end fields such as aerospace and automobile manufacturing. From this perspective, 2-amino-6-methylsulfonylbenzothiazoline is widely used and plays an indispensable role in the development of modern chemical industry and related industries.
    What are the physical properties of 2-Amino-6-methylsulfonylbenzothiazole?
    2-Amino-6-methylsulfonylbenzothiazole is one of the organic compounds. Its physical properties are quite important and are of key significance in scientific research and industrial applications.
    Looking at its properties, it is mostly white to light yellow crystalline powder under normal conditions. This form is easy to store and transport, and is easy to disperse in many chemical reaction systems, which is conducive to the smooth progress of the reaction.
    When it comes to melting point, it is about a specific temperature range. This value is an important basis for identification and purity judgment. Accurate determination of melting point can provide insight into the purity of the compound. If impurities exist, the melting point often changes accordingly.
    Solubility is also a key property. In common organic solvents, such as methanol, ethanol, etc., it has a certain solubility. This property makes it participate in various chemical reactions in solution form, and also helps it to be effectively treated in separation, purification and other operations. In water, its solubility is relatively limited, which determines its application scenarios in aqueous systems.
    Furthermore, its stability cannot be ignored. Under normal temperature and pressure and without the influence of special chemical reagents or conditions, 2-amino-6-methylsulfonylbenzothiazole is relatively stable and can be stored for a long time without significant chemical changes. When exposed to extreme conditions such as strong acids, strong bases or high temperatures, its chemical structure may be affected, thereby changing its physical properties and chemical activities.
    In summary, the physical properties of 2-amino-6-methylsulfonylbenzothiazole, such as their properties, melting point, solubility, and stability, are interrelated and jointly determine their application direction and value in the field of chemistry. They are all elements that cannot be ignored in many fields such as synthetic chemistry, drug development, and materials science.
    What is the chemical synthesis method of 2-Amino-6-methylsulfonylbenzothiazole?
    The chemical synthesis method of 2-amino-6-methylsulfonylbenzothiazole is as follows:
    First take an appropriate amount of 2-amino benzothiazole as the starting material, which is the basis of the reaction. Place it in a suitable reaction vessel, which needs to be clean and suitable for the reaction conditions.
    Then, add a methylsulfonylation reagent to it. Common methylsulfonylation reagents, such as methylsulfonyl chloride, to introduce methylsulfonyl groups. When adding reagents, pay attention to the rate of addition, not too fast or too slow. If it is too fast, the reaction will be violent and difficult to control, and if it is too slow, it will take too long. < Br >
    At the same time, an appropriate amount of alkali is added as a catalyst to promote the progress of the reaction. The amount of alkali needs to be precisely controlled, and too much or too little will affect the reaction effect. Common bases, such as sodium carbonate, potassium carbonate, etc.
    The reaction needs to be carried out under specific temperature and time conditions. Generally speaking, heating to maintain the reaction system at a moderate temperature, such as between 60-80 ° C, keep the reaction warm for several hours, about 3-5 hours, during which continuous stirring is required to allow the reactants to fully contact and uniformly react.
    After the reaction is completed, the product is separated and purified. Means such as extraction and column chromatography can be used. When extracting, select a suitable extractant to separate the product from the reaction mixture. Column chromatography can further purify the product and remove impurities to obtain high-purity 2-amino-6-methylsulfonylbenzothiazole.
    In this process, the operation of each step needs to be rigorous and meticulous, and a slight poor pool will affect the yield and purity of the product.
    What are the precautions in storage and transportation of 2-Amino-6-methylsulfonylbenzothiazole?
    2-Amino-6-methylsulfonylbenzothiazole is an organic compound. During storage and transportation, many matters need to be paid attention to.
    First, when storing, it should be placed in a cool, dry and well-ventilated place. This compound may deteriorate in high temperature or humid environment, causing its chemical properties to change. If heated, it may cause decomposition reactions, destroy molecular structure, reduce product quality, and even produce dangerous substances. Humid environment may also cause it to absorb moisture, affecting purity and stability.
    Second, keep away from fire, heat and strong oxidants. 2-Amino-6-methylsulfonylbenzothiazole may be flammable, easy to burn in case of open flames and hot topics, causing fires. And strong oxidants come into contact with it, or trigger violent chemical reactions, there is a risk of explosion.
    Third, the storage container must be well sealed. Sealing can prevent it from contacting with oxygen, moisture and other components in the air, and avoid reactions such as oxidation and hydrolysis. Generally speaking, corrosion-resistant containers, such as glass or specific plastic containers, should be used to prevent the container from reacting with compounds and contaminating the product.
    Fourth, during transportation, ensure that the packaging is firm. The road is bumpy or the package is damaged, causing the compound to leak, polluting the environment, and may also cause harm to the transportation personnel. Therefore, the package needs to be strictly inspected to ensure that it can withstand the vibration and collision during transportation.
    Fifth, transportation and storage personnel should be professionally trained to be familiar with the properties of 2-amino-6-methylsulfonyl benzothiazole and emergency treatment methods. In the event of an unexpected situation such as leakage, it can be disposed of quickly and correctly to reduce losses and hazards.
    What is the market outlook for 2-Amino-6-methylsulfonylbenzothiazole?
    2-Amino-6-methylsulfonylbenzothiazole, which is widely used in the chemical industry.
    In the field of medicine, it is a key organic synthesis intermediate. In the current state of pharmaceutical research and development, the creation of many new drugs often relies on such intermediates with special structures. Due to its unique chemical structure, different functional groups can be introduced through various chemical reactions to obtain compounds with specific pharmacological activities. Nowadays, there is a growing demand for new antibacterial, anti-inflammatory and anti-tumor drugs. 2-Amino-6-methylsulfonylbenzothiazole can provide a unique skeleton for drug molecules, so it is very likely to emerge in the process of developing such drugs, and the market prospect is promising.
    In the field of materials, with the advancement of science and technology, the demand for high-performance materials is also increasing. 2-Amino-6-methylsulfonylbenzothiazole can be integrated into polymer material systems through specific processes. Its special functional groups may improve the thermal stability and mechanical properties of materials. If an appropriate amount of this compound is added to some high-end engineering plastics, its properties may be optimized to meet the needs of high-end fields such as aerospace, electronics and electrical appliances. Therefore, in the tide of material innovation, it also has the opportunity to win a place in the market.
    Furthermore, in the dye industry, 2-amino-6-methylsulfonylbenzothiazole may have special optical properties due to its structure. With the rise in demand for environmentally friendly and high-performance dyes, the research and development of new dyes containing such structures has also attracted attention. It may endow dyes with better light resistance, washing resistance, etc., and may open up new application fields in textile, printing and dyeing industries, ushering in new opportunities for market development.
    To sum up, 2-amino-6-methylsulfonylbenzothiazole has a promising market prospect in many fields such as medicine, materials, and dyes. With the continuous evolution of technologies in various industries, it is expected to bloom in the market.