2 Methyl 3 Bromo 6 Methoxy Pyridine
pyridine pyrrole pyrazine piperidine piperazine

2-METHYL-3-BROMO-6-METHOXY PYRIDINE

    Specifications

    HS Code

    844307

    Chemical Formula C7H8BrNO
    Molar Mass 202.048 g/mol
    Appearance Solid (Typical for many organic compounds of this nature, but actual appearance may vary depending on purity and conditions)
    Boiling Point Data may vary; likely in the range where pyridine - related bromo - methoxy derivatives boil, usually above 100°C (but exact value needs experimental determination)
    Melting Point Unknown without experimental data; depends on the crystal structure and intermolecular forces
    Solubility In Water Low solubility as it is an organic compound with non - polar hydrocarbon and pyridine ring, but some solubility may exist due to the polar - nature of the nitro - like groups
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform, ethyl acetate, due to its organic nature
    Density Unknown without experimental determination; related compounds have densities close to 1 - 2 g/cm³
    Pka Related pyridine derivatives usually have pKa values in the range of 5 - 6 for the pyridinium ion formation, but exact value for this compound needs experimental determination
    Reactivity The bromine is reactive towards nucleophilic substitution reactions; the methoxy group can also participate in some reactions like methylation - related displacement reactions

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    Frequently Asked Questions

    As a leading 2-METHYL-3-BROMO-6-METHOXY PYRIDINE 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 physical properties of 2-METHYL-3-BROMO-6-METHOXY PYRIDINE?
    2-Methyl-3-bromo-6-methoxypyridine, this is an organic compound. Its physical properties are quite important and are related to many practical applications.
    First, let's talk about the appearance, usually colorless to pale yellow liquid or crystalline solid. This property allows us to intuitively identify its morphology, which is based on the operation and storage. Looking at its color, if there is a significant change, it may suggest a change in quality.
    Besides melting point and boiling point, melting point or in a specific temperature range, such as [specific melting point range, subject to actual measurement], boiling point also has corresponding values, such as [specific boiling point range]. The determination of melting point and boiling point is crucial in the separation and purification of this compound. Knowing the melting point, it can be purified by recrystallization and other means; knowing the boiling point, the substance in the mixture can be separated by distillation.
    In terms of solubility, in organic solvents, such as ethanol, ether, etc., there may be a certain solubility, due to the principle of similar miscibility. However, in water, its solubility may be low. This property determines its application in different solvent systems. In organic synthesis reactions, the solubility is a key consideration when selecting a suitable solvent to promote the reaction.
    Density is also one of its physical properties, with specific values, such as [specific density value]. Density can help to judge the stratification when mixed with other substances, and provide a basis in liquid-liquid separation operations.
    In addition, the odor of the compound may have certain characteristics, although it is difficult to describe accurately, those familiar with it may be able to make a preliminary judgment based on it. However, the odor judgment needs to be cautious, because it may be affected by impurities and other factors.
    In short, the physical properties of 2-methyl-3-bromo-6-methoxypyridine are interrelated, and are of great significance to its preparation, application, analysis and detection in many fields such as chemical industry and scientific research.
    2-METHYL-3-BROMO-6-METHOXY the main uses of PYRIDINE
    2-Methyl-3-bromo-6-methoxypyridine, an organic compound with a wide range of uses.
    In the field of pharmaceutical synthesis, it is often a key intermediate. The unique structure of the geinpyridine ring gives the compound specific chemical and biological activities. Through clever chemical reactions, it can be modified and transformed to construct complex molecular structures with diverse pharmacological activities. For example, it can be used to synthesize drugs targeting specific disease targets, or as a lead compound, which can be further optimized to improve the efficacy of drugs and reduce side effects.
    also plays an important role in the field of pesticide creation. Pyridine compounds often exhibit significant biological activity against pests. 2-methyl-3-bromo-6-methoxypyridine can be used as a basic raw material to develop new and efficient pesticide products by combining with other functional groups. Such pesticides may have better insecticidal, bactericidal or herbicidal properties, and have less impact on the environment, which is suitable for the current development of green agriculture.
    It also has potential uses in materials science. The unique electronic structure and chemical properties of organic compounds make it possible to prepare materials with special functions. For example, through specific polymerization reactions or modifications, materials with photoelectric properties can be obtained, which can be used in organic Light Emitting Diodes (OLEDs), solar cells and other fields, providing new opportunities and directions for the research and development of new materials.
    2-methyl-3-bromo-6-methoxypyridine, with its unique structure and chemical properties, plays an important role in many important fields such as medicine, pesticides and materials science, providing a key material basis for technological innovation and development in related fields.
    2-METHYL-3-BROMO-6-METHOXY the synthesis methods of PYRIDINE
    To prepare 2-methyl-3-bromo-6-methoxypyridine, there are many methods. One common method is to start with the corresponding pyridine derivative and obtain it through multi-step transformation.
    Take the appropriate pyridine precursor first. If 6-methoxy-2-methylpyridine is used as the starting material, bromine atoms can be introduced into it at the 3rd position. Due to the characteristics of the electron cloud distribution of the pyridine ring, an appropriate method needs to be selected. Electrophilic substitution reaction can be used to interact with brominating agents. If liquid bromine is used as the bromine source, in the presence of appropriate catalysts such as iron powder or iron tribromide, liquid bromine and 6-methoxy-2-methylpyridine undergo electrophilic substitution, and the bromine atom selects to enter the third position to obtain the target product. However, this process requires controlling the reaction conditions, such as temperature, reactant ratio, etc., to prevent side reactions such as polybromide.
    Another way is to build a pyridine ring first. For example, using a raw material containing methoxy and methyl, through a series of reactions such as condensation and cyclization, the pyridine ring is formed, and the group introducing the bromine atom is reserved at a specific position. Subsequent to the substitution reaction, the group is replaced with bromine atoms to obtain 2-methyl-3-bromo-6-methoxypyridine. Although this strategy has many steps, it can precisely control the position and type of substituents in the pyridine ring.
    Or start from a simple raw material, and gradually build the structure of the target molecule through multi-step functional group transformation and carbon-carbon bond formation reaction. Although these methods are complex, they have the advantages of easy availability of raw materials and flexible routes. The specific selection method depends on factors such as raw material availability, difficulty of reaction conditions, yield and cost.
    2-METHYL-3-BROMO-6-METHOXY PYRIDINE need to pay attention to when storing and transporting
    2-Methyl-3-bromo-6-methoxypyridine is a chemical substance. When storing and transporting, many aspects need to be paid attention to.
    Storage first. First, it must be placed in a cool, dry and well-ventilated place. This is because the substance may be sensitive to heat and humidity, and high temperature and humid environment may cause it to deteriorate. Second, it must be kept away from fire and heat sources. Because of its flammability, it is very dangerous to encounter open flames, hot topics or cause combustion. Third, it should be stored separately from oxidants, acids, alkalis, etc., and must not be mixed. Due to the active chemical properties of the substance, contact with the above substances or cause severe chemical reactions, causing danger. Fourth, the storage area should be equipped with suitable containment materials to prevent leakage accidents, so that they can be dealt with in time and reduce hazards.
    As for transportation. First of all, make sure that the packaging is complete and sealed before transportation. Prevent material leakage due to damaged packaging during transportation. Second, strictly follow the prescribed route during transportation and do not change it at will. Avoid sensitive areas such as densely populated areas and water sources to reduce the impact on the public and the environment in the event of an accident. Furthermore, transportation vehicles should be equipped with corresponding varieties and quantities of fire fighting equipment and leakage emergency treatment equipment. In the event of an accident on the way, rescue and treatment can be carried out quickly. In addition, transportation personnel need to undergo professional training, familiar with the characteristics of the substance and emergency treatment methods. Pay close attention to the status of the goods during transportation, and deal with problems immediately. Only in this way can we ensure the safety of 2-methyl-3-bromo-6-methoxypyridine during storage and transportation, avoid accidents, and protect the safety of personnel and the environment.
    2-METHYL-3-BROMO-6-METHOXY the market price of PYRIDINE
    I don't know the market price of 2-methyl-3-bromo-6-methoxypyridine. Market prices often change due to supply and demand, quality, source and many other factors, which is difficult to hide.
    For details, you can go to the chemical raw material trading market and consult merchants. There are merchants who sell this product and must know the current market. Or you can visit the chemical product information platform, which often collects price information of various chemical products, or you can get it. Or you can ask practitioners in the chemical industry, who have been in this industry for a long time and have insight into price fluctuations and market trends, or can solve your doubts.
    However, it should be noted that the chemical market is changing, and prices vary day by day. Even if the exact price obtained at that time may not be applicable to the present. And different quality, different packaging, and different purchase quantities can all cause price differences. Therefore, if you want to get an accurate price, you must inquire in person and investigate carefully before you can get a near-real price.