2 Methyl 6 Benzothiazole Amine Hydrochloride
quinoline thiophene imidazole thiazole

2-Methyl-6-Benzothiazole Amine Hydrochloride

    Specifications

    HS Code

    388542

    Chemical Formula C8H9ClN2S
    Molecular Weight 200.69
    Appearance Typically a solid
    Odor May have a characteristic odor
    Solubility In Water Limited solubility in water
    Solubility In Organic Solvents Soluble in some organic solvents
    Melting Point Varies (data dependent on purity)
    Pka Value Depends on the environment
    Ph In Solution Acidic due to hydrochloride part
    Stability Stable under normal conditions but sensitive to strong oxidizing agents

    As an accredited 2-Methyl-6-Benzothiazole Amine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

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    General Information
    Where to Buy 2-Methyl-6-Benzothiazole Amine Hydrochloride in China?
    As a trusted 2-Methyl-6-Benzothiazole Amine Hydrochloride manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

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

    2-Methyl-6-Benzothiazole is Amine Hydrochloride?
    2-Methyl-6-benzothiazolamide hydrochloride has a wide range of uses and is widely used in the chemical and pharmaceutical fields.
    In the chemical industry, it is often the key raw material for the synthesis of special organic materials. Due to its unique chemical structure, it can be derived through a series of reactions with a variety of compounds with special properties. If it participates in the polymerization reaction, it can prepare polymer materials with special optical and electrical properties. Such materials are very popular in cutting-edge fields such as electronic display and optical fibers, which help to improve the performance and quality of related products.
    In the pharmaceutical field, 2-methyl-6-benzothiazolamide hydrochloride is also important. It is often used as a drug intermediate, laying the foundation for the synthesis of many therapeutic drugs. Because its structure can interact with specific targets of organisms, through reasonable drug design and chemical modification, antibacterial, anti-inflammatory and other drugs can be developed. For example, the development of some new antibacterial drugs uses this as the starting material, and through multi-step reactions, structures that are compatible with key metabolic enzymes of bacteria are constructed, thereby inhibiting bacterial growth and reproduction and escorting human health.
    In addition, it has also contributed to the field of scientific research and exploration. Researchers often use it as a model compound to further explore basic chemical issues such as organic reaction mechanisms and molecular interactions. By studying its reaction characteristics, we can expand the boundaries of organic synthetic chemistry, provide ideas and basis for the development of novel synthetic methods and strategies, and promote the continuous development of chemistry.
    2-Methyl-6-Benzothiazole the physicochemical properties of Amine Hydrochloride
    2-Methyl-6-benzothiazolamine hydrochloride, this is an organic compound. Its physicochemical properties are unique, let me tell you one by one.
    Looking at its properties, it is usually white to light yellow crystalline powder with fine texture. Its melting point is quite critical, because of the specific melting point, it can help to distinguish the purity. After many experiments, the melting point is usually within a certain range (the specific value varies slightly according to the experimental conditions). This temperature range, the substance changes from solid to liquid, is one of its characteristics.
    Solubility is also an important property. In water, it may have a certain solubility. The hydrochloride part can interact with water molecules. After ionization, it is integrated into water, but the solubility is not infinite. When it reaches the saturated state, it will no longer dissolve. In organic solvents, such as ethanol and acetone, the solubility is different. In ethanol, because ethanol and the compound part of the structure have similar miscibility principles, the solubility may be better than some organic solvents. According to actual needs, this difference in solubility can be used for separation and purification.
    In terms of stability, the properties are still stable under normal temperature and pressure and dry environment. However, in case of strong acid and strong base, some chemical bonds in the structure may be affected. In case of strong base, the hydrochloride part may react, causing the structure of the compound to change. Under light conditions, long-term irradiation may trigger photochemical reactions such as intramolecular electron transitions, which affect its chemical structure and properties. Thermal stability also needs attention. At high temperatures, molecular vibration intensifies, chemical bonds or breaks, causing decomposition reactions to occur.
    The physical and chemical properties of this compound are of great significance in organic synthesis, drug research and development, etc. During organic synthesis, reaction conditions can be optimized according to properties such as melting point and solubility, and yield and purity can be improved. In drug development, stability is related to drug storage and efficacy, and it plays a crucial role in the development of safe and effective drugs.
    What is the production method of 2-Methyl-6-Benzothiazole Amine Hydrochloride?
    The preparation method of 2-methyl-6-benzothiazolamide hydrochloride is a key point of investigation in chemical technology. In the past, this compound was prepared by a specific route.
    First take benzothiazole compounds as starting materials, which are essential in the reaction system. In an appropriate reaction vessel, add an appropriate amount of solvent, such as an organic solvent, which can create a suitable reaction environment, help the reactants to blend and collide with each other, so as to facilitate the progress of the reaction.
    Then, precisely control the reaction temperature and pressure. The temperature greatly affects the reaction rate and product selectivity; the appropriate pressure is also the guarantee for the smooth progress of the reaction. Under certain temperature and pressure conditions, specific reagents are added to make benzothiazole compounds undergo specific chemical reactions, such as substitution reactions, addition reactions, etc., and gradually introduce functional groups such as methyl and amine groups.
    To complete the reaction, a series of separation and purification steps are required. The product can be initially separated by methods such as extraction, taking advantage of the differences in solubility of different solvents to the product and impurities. Then crystallization is used to further purify the product and obtain high-purity 2-methyl-6-benzothiazolamide.
    Finally, 2-methyl-6-benzothiazolamine is reacted with hydrochloric acid to form the target product 2-methyl-6-benzothiazolamine hydrochloride. In this process, strict control of the reaction conditions, such as the proportion of reactants, reaction time, etc., can ensure the quality and yield of the product. In this way, the method of preparing 2-methyl-6-benzothiazolamine hydrochloride is obtained.
    2-Methyl-6-Benzothiazole the market price of Amine Hydrochloride
    2-Methyl-6-benzothiazolamine hydrochloride, the price of this product in the market is difficult to break. Covered with the change of its price, it is affected by various factors, just like a boat traveling in the sea, disturbed by wind and waves.
    First of all, at the end of the raw materials, if the raw materials required are easy to obtain and widely supplied, the price will be stable and flat; if the raw materials are scarce, or the origin changes, and the supply is poor, the price will rise like the water of the rising tide. For example, if the required special chemical raw materials, if the origin encounters natural and man-made disasters and the supply is suddenly reduced, the cost of this compound will rise, and the price will also follow.
    Furthermore, the art of production is also the key. Advanced and efficient craftsmanship can reduce costs, such as sharp axes breaking wood, so that output increases and costs less, and the price is close to the people; if the craftsmanship is complicated, energy consumption is large and output is small, the price will remain high.
    The supply and demand of the market is particularly important. If there are many applicants, it can be used in pharmaceuticals, scientific research, etc., but there are few suppliers, and its price will be high, just like a rare treasure. If everyone competes, the price will soar; on the contrary, if there is little demand, inventory is overstocked, and merchants are accumulating goods or lowering their prices, such as abandoning their shoes, in order to turn around.
    In addition, policy regulations, transportation costs, etc., also affect the price. If the policy is strict, the supervision is strengthened, the production is limited, and the cost increases and the price moves; the transportation road is long, and the cost is superimposed, which also makes the price fluctuate.
    Therefore, in order to know the inter-market price, it is necessary to consider all the reasons in detail, explore in the chemical raw material market in detail, consult industry experts, and look at the recent transaction situation.
    2-Methyl-6-Benzothiazole Amine Hydrochloride Quality Standard
    2-Methyl-6-benzothiazolamine hydrochloride is an important compound in the field of organic chemistry. Its Quality Standard is of key significance in industrial production and scientific research applications.
    According to the ancient expression of "Tiangong Kaiwu", the Quality Standard of such compounds is the first purity. Pure, when there are no impurities in it, the amount of impurities depends on its performance. If there are many impurities, if the gold is mixed with lead and tin, it will damage its quality. Therefore, the purity of 2-methyl-6-benzothiazolamine hydrochloride often needs to reach a very high level, generally in percentage terms, and it is more than 90% to 80% before it can be used for various purposes.
    The second time is related to its appearance. Its shape should be a specific shape, or a powder, or a crystal, and the color should be pure and uniform. If it is a powder, it should be fine and uniform, without the appearance of coarse-grained agglomeration; if it is crystalline, the crystal shape should be regular, without incomplete and messy appearance. The color should also meet specific requirements. If there are different colors such as yellowing and graying, it is not a good product.
    Furthermore, the melting point is also an important indicator. When this substance melts at a specific temperature, the accuracy of the melting point can be tested for its purity and quality. The deviation of the melting point, such as the deviation of the boat from the channel, indicates that there is an abnormality in its internal structure or composition. Therefore, it is necessary to accurately determine its melting point, and it should be consistent with the established standard melting point range to prove that its quality is qualified.
    It is also soluble, and in a specific solvent, it should exhibit specific dissolution characteristics. Difficulty of dissolution, rate, clarity of the solution, etc., are all points of consideration. If the dissolution is poor, or the solution is turbid, it indicates that the quality is questionable.
    In addition, content determination is also indispensable. Through accurate analytical methods, the actual content of 2-methyl-6-benzothiazolamine hydrochloride is determined to ensure that it is similar to the nominal content, which is also the core element of Quality Standards.
    All of these are the key to the 2-methyl-6-benzothiazolamine hydrochloride Quality Standard, and need to be carefully controlled to obtain high-quality products, which should be used in various applications.