2 Amino 4 Methylbenzothiazole
quinoline thiophene imidazole thiazole

2-Amino-4-methylbenzothiazole

    Specifications

    HS Code

    610374

    Chemical Formula C8H8N2S
    Molecular Weight 164.23 g/mol
    Appearance Solid
    Color Typically white to off - white
    Odor Characteristic, likely pungent
    Melting Point 137 - 140 °C
    Solubility In Water Poorly soluble
    Solubility In Organic Solvents Soluble in some organic solvents like ethanol, chloroform
    Stability Stable under normal conditions
    Hazard Class Irritant (may cause skin, eye, and respiratory irritation)

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    General Information
    Where to Buy 2-Amino-4-methylbenzothiazole in China?
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    Frequently Asked Questions

    As a leading 2-Amino-4-methylbenzothiazole 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-4-methylbenzothiazole?
    2-% hydroxy-4-methylquinolinopyridine is an important class of organic compounds, which have key uses in many fields such as medicine and materials.
    In the field of medicine, it exhibits significant biological activity. Numerous studies have shown that this compound has inhibitory effect on cancer cell growth. It can interfere with the proliferation process of cancer cells through specific mechanisms, such as acting on key signaling pathways of cancer cells, making cancer cells unable to divide and grow normally, and then providing key lead compounds for the development of anti-cancer drugs. For example, in some experiments, containing this structural drug can effectively reduce tumor cell viability and inhibit tumor volume growth. At the same time, it also performs well in antibacterial, and can inhibit or kill a variety of pathogenic bacteria. By destroying the bacterial cell wall or cell membrane structure, it affects the bacterial metabolic process, thereby protecting the human body from bacteria.
    In the field of materials, 2-hydroxy-4-methylquinolinopyridine exhibits excellent optical properties due to its unique molecular structure. It can be used as a fluorescent material in devices such as Light Emitting Diode (LED). Due to its specific fluorescence emission wavelength and high fluorescence quantum yield, it can emit bright and stable fluorescence, improving LED luminous efficiency and color purity. In addition, in the field of solar cells, it can act as a photosensitizer, enhance the absorption and conversion ability of the battery to light, promote more light energy into electricity, and improve the photoelectric conversion efficiency of solar cells.
    In short, 2-hydroxy-4-methylquinolinopyridine has become a research hotspot for many researchers due to its important applications in the fields of medicine and materials. With the continuous deepening of research, it is expected to bring more breakthroughs and innovations in related fields.
    What are the physical properties of 2-amino-4-methylbenzothiazole?
    2-Amino-4-methylpyrimidine base, having various physical properties. It is a white to light yellow crystalline powder, which shows this state in appearance and can be seen.
    When it comes to solubility, the substance is slightly soluble in water. Water is the source of life, and many substances are dissolved into it to form a solution, but the amount of this substance dissolved in water is very small, which makes it different in aqueous systems. However, it is soluble in organic solvents such as ethanol and chloroform. Ethanol is often used as a solvent, which is volatile and has a special odor; chloroform is also a common organic solvent, with a certain density and volatility. The solubility of this substance in such organic solvents indicates that it interacts with the molecules of organic solvents and can be dispersed in them in molecular or ionic states.
    Its melting point is also an important physical property. The melting point is the temperature at which the substance changes from a solid state to a liquid state. The melting point of this 2-amino-4-methylpyrimidine base is within a certain range. At this temperature, the lattice structure is destroyed, and the molecule obtains enough energy to get rid of the lattice binding, and changes from an ordered solid state to a disordered liquid state. This temperature range reflects the strength of the intermolecular force.
    Furthermore, its stability also needs attention. At room temperature and pressure, the substance has certain stability, and the molecular structure does not change significantly. However, under extreme conditions such as high temperature and strong acid and alkali, its structure may change, triggering chemical reactions and causing changes in its chemical composition and properties. This stability is related to its storage and use conditions, and it needs to be stored in a suitable environment to preserve its original properties and functions.
    What are the chemical synthesis methods of 2-amino-4-methylbenzothiazole?
    To prepare 2-amino-4-methylquinolinopyridine, there are various methods.
    First, it can be obtained by the condensation reaction of the corresponding pyridine derivative and the quinoline derivative. First, the appropriate pyridine compound is taken, and under specific reaction conditions, such as catalysis by a catalyst, it interacts with the carefully selected quinoline derivative at a certain temperature and solvent environment. By adjusting the ratio of the reactants, reaction temperature and time, the condensation of the two is promoted, and the basic structure of the target product is gradually constructed. This process requires fine control of the reaction conditions to prevent the growth of side reactions and affect the purity and yield of the product.
    Second, the compound can be constructed by multi-step reaction. The starting material is first transformed into a specific functional group to generate an intermediate product with a suitable activity check point. For example, a substitution reaction is carried out on the raw material, and a specific substituent is introduced to lay the foundation for the subsequent reaction. Then, through the cyclization reaction, the molecular structure is closed-loop, and the mother nucleus of quinoline and pyridine is gradually formed. During this period, the reaction products in each step need to be separated and purified to ensure the smooth progress of the subsequent reaction. Each step of the reaction requires careful selection of reaction reagents, solvents and reaction conditions according to the characteristics of the reactants and the needs of the target product.
    Third, biomimetic synthesis may be used. The synthesis of 2-amino-4-methylquinolinopyridine is achieved by mimicking the chemical reaction mechanism in vivo and catalyzing by enzymes or similar bioactive substances. This method usually has the advantages of mild reaction conditions and high selectivity. However, the difficulty lies in finding a suitable biological catalyst and constructing a suitable reaction system to simulate the microenvironment in vivo to ensure that the reaction can proceed efficiently and smoothly.
    The process of synthesis has its own advantages and disadvantages. It is necessary to carefully choose the appropriate synthesis method according to the actual needs, such as the availability of raw materials, cost considerations, and purity requirements of the product, in order to achieve the desired effect.
    What is the price of 2-amino-4-methylbenzothiazole in the market?
    In today's market, the price of 2-amino-4-methylquinazolinone is quite difficult to determine. The level of its price often depends on many factors, which cannot be hidden in one word.
    First, it depends on its quality. If the quality is pure and free of impurities, the craftsmanship is excellent, and the carefully selected raw materials are made according to exquisite methods, the price will be high. On the contrary, if the quality is flawed and contains more impurities, although it is also 2-amino-4-methylquinazolinone, the price should be inferior to the former.
    Second, it is related to supply and demand. If there are many seekers in the market, but there are few producers, and the supply is in short supply, the price will rise automatically. For example, at a certain time, the demand for this product in the field of medicine will increase greatly, and the producer will not increase its production quickly, so the price will rise. If the supply exceeds the demand, the stock is full, and the producer wants to sell it quickly, the price may drop.
    Third, the difference between producers also makes the price different. Famous producers prioritize their reputation and strict quality control, and the price of their products is often higher than that of the unknown. Those who are unknown are competing in the market, or lowering the price to sell.
    Fourth, changes in world conditions and regulations of government orders also affect their prices. If you apologize every year, the raw materials are rare, and the price will rise because of it. If the government increases taxes, the cost of the manufacturer will increase, and it will also be transferred to the selling price.
    In summary, the price of 2-amino-4-methylquinazolinone varies from time to time in the city, or due to quality, supply and demand, manufacturers, and the current situation. If you want to know the exact price, you must carefully check the market conditions and consult various merchants before you can get it.
    What are the manufacturers of 2-Amino-4-methylbenzothiazole?
    2-% hydroxy-4-methylquinolinopyridine is an important organic compound, which is widely used in many fields such as medicine and materials. However, looking for its manufacturer, it is difficult to exactly correspond to the ancient books and documents. Today, it is based on the style of ancient classical Chinese and analogical reasoning.
    In the forest of modern chemical industry, like a hundred workers in ancient times. There are factories that are skilled in organic synthesis, similar to the workshops of ancient craftsmen, specializing in fine chemicals. They rely on advanced techniques and exquisite craftsmanship, or they are the choice for the production of this compound. For example, in the land of the south of the Yangtze River, there are famous chemical factories that often hold important responsibilities for organic synthesis. With their profound background and cutting-edge technology, they must be involved in the preparation of 2-% hydroxy-4-methylquinolinopyridine.
    Furthermore, there are also chemical towns in the north, with many factories. Among them are those who focus on the synthesis of heterocyclic compounds, just like craftsmen who specialized in a class of equipment in ancient times. The heterocyclic structure is just the key to this compound. Such manufacturers have great experience in controlling raw materials and reaction conditions, and may also be the place where this compound is produced.
    There are also affiliated enterprises of university research institutes, just like the technology workshops of ancient universities. Relying on scientific research, it has frequent innovation and is interested in the synthesis of new compounds. As a potential compound, 2-% hydroxy-4-methylquinolinopyridine may be produced for research and development, in order to seek the progress of production, education and research.
    Although there is no exact list of ancient books to refer to its factory, according to the chemical industry pattern and synthesis characteristics, companies specializing in organic synthesis, specializing in heterocyclic compounds, and combining production, education, and research may all be the production sites of 2-% hydroxy-4-methylquinolinopyridine.