Methyl 6 Bromo 5 Chloropyridine 3 Carboxylate
pyridine pyrrole pyrazine piperidine piperazine

Methyl 6-bromo-5-chloropyridine-3-carboxylate

    Specifications

    HS Code

    641955

    Name Methyl 6-bromo-5-chloropyridine-3-carboxylate
    Molecular Formula C7H5BrClNO2
    Molar Mass 250.477 g/mol
    Appearance Solid (predicted)
    Boiling Point Estimated around 290 - 300 °C
    Solubility In Water Low solubility, organic - soluble
    Density Estimated based on similar compounds around 1.7 - 1.8 g/cm³
    Pka No direct data, but carboxylate group has acidic nature

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    General Information
    Where to Buy Methyl 6-bromo-5-chloropyridine-3-carboxylate in China?
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    Frequently Asked Questions

    As a leading Methyl 6-bromo-5-chloropyridine-3-carboxylate 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 Methyl 6-bromo-5-chloropyridine-3-carboxylate?
    Methyl 6-bromo-5-chloropyridine-3-carboxylic acid ester is an important compound in the field of organic synthesis. Its main use is as a key intermediate in the field of medicinal chemistry. When creating new drugs, chemists often carefully construct molecular structures with specific biological activities by ingeniously modifying and modifying their structures. Due to the unique chemical properties of the geopyridine ring with halogen atoms and ester groups, it can be linked with other functional groups through many organic reactions, such as nucleophilic substitution, coupling reactions, etc., to generate complex and diverse compounds, and then seek lead compounds with potential pharmacological activities.
    Secondly, in the field of materials science, methyl 6-bromo-5-chloropyridine-3-carboxylic acid esters also show unique uses. It can be used as a basic unit for building functional materials, and specific electrical, optical or chemical properties can be imparted to materials through polymerization reactions or composites with other materials. For example, introducing it into conjugated polymer systems may be able to adjust the electronic structure and energy level of polymers, thereby improving the photoelectric properties of materials, and may have potential applications in organic Light Emitting Diodes, solar cells and other fields.
    Furthermore, in the field of agricultural chemistry, this compound can be used as a starting material to prepare biologically active pesticides. Through appropriate chemical transformation, pesticide products that have high inhibitory or killing effects on specific pests and pathogens can be synthesized, providing an effective means for crop pest control. In short, methyl 6-bromo-5-chloropyridine-3-carboxylate plays an indispensable role in many important fields due to its unique chemical structure, providing a key material basis for the development of chemical research and related industries.
    What are the synthetic methods of Methyl 6-bromo-5-chloropyridine-3-carboxylate?
    There are many different methods for preparing methyl 6-bromo-5-chloropyridine-3-carboxylic acid esters. One common one is that the corresponding pyridine carboxylic acid can be used as the starting material, and the appropriate halogenation reagent, such as the reagent containing bromine and chlorine, is first halogenated, so that the specific position of the pyridine ring is introduced into the bromine and chlorine atoms, and then it is esterified with methanol under suitable conditions and catalysts to obtain the target product. During halogenation, the reaction conditions, such as temperature, reagent dosage, and reaction time, need to be carefully regulated to prevent side reactions and ensure that the bromine and chlorine atoms fall accurately at the designated position.
    In addition, pyridine derivatives can also be used as starters. First, pyridine carboxylic acid esters are esterified, and then halogenation is carried out to introduce bromine and chlorine atoms on the pyridine ring. In this path, the esterification reaction needs to select suitable catalysts and reaction conditions to increase the reaction efficiency and product yield; the halogenation step should also be handled with caution. Due to the electron cloud distribution characteristics of the pyridine ring, different reaction conditions or halogen atom substitution positions are different.
    In addition, other compounds containing pyridine structures are used as raw materials, and the structure of the target molecule is gradually constructed through several steps of reaction. These methods need to be selected according to various factors such as raw material characteristics, reaction conditions, equipment requirements and cost, and strive to obtain high-purity methyl 6-bromo-5-chloropyridine-3-carboxylate in an efficient, economical and environmentally friendly way.
    What are the physical properties of Methyl 6-bromo-5-chloropyridine-3-carboxylate?
    Methyl 6-bromo-5-chloropyridine-3-carboxylic acid ester, this is a specific compound in the field of organic chemistry. Its physical properties are quite important and are related to many chemical applications.
    Looking at its appearance, it is usually a white to light yellow solid. This color and morphological characteristics are quite useful in the preliminary identification of the compound. Its melting point is also a key physical property. It has been experimentally determined to be in a specific temperature range. The determination of the melting point helps to confirm the purity and characteristics of the compound. The presence of impurities often causes the melting point to change.
    In addition, its solubility is also worthy of attention. In common organic solvents, such as ethanol and acetone, it shows a certain solubility. In ethanol, under specific temperature and concentration conditions, a certain degree of dissolution can be achieved. This property is crucial for selecting an appropriate solvent system during chemical synthesis and separation.
    In addition, the density of the compound is also significant. Its density value is indispensable for accurate measurement and to ensure accurate substance dosage in solution preparation and other operations. Through accurate measurement, its density data under specific conditions can be obtained, providing a basis for practical application.
    In terms of volatility, it is relatively low, and the volatilization rate is relatively slow at room temperature and pressure. This property improves its stability during storage and use, reducing losses and risks due to volatilization.
    In summary, the physical properties of methyl 6-bromo-5-chloropyridine-3-carboxylic acid esters, including appearance, melting point, solubility, density, and volatility, play a crucial role in their applications in organic synthesis, drug development, and many other fields.
    What is the market outlook for Methyl 6-bromo-5-chloropyridine-3-carboxylate?
    Guanfu methyl 6-bromo-5-chloropyridine-3-carboxylic acid ester, in the field of chemical industry, has a considerable market prospect. Coat is often an important intermediate in the field of organic synthesis. The creation of many drugs and pesticides relies on this as a basis to derive various active compounds.
    As far as drug research and development is concerned, the current pharmaceutical industry is booming, and there is a growing demand for novel, efficient and specific drugs. With its unique chemical structure, methyl 6-bromo-5-chloropyridine-3-carboxylate can participate in various reaction pathways to construct molecular structures that are compatible with disease targets. Therefore, there may be opportunities to emerge in the synthesis and exploration of antimalarial, antimicrobial, anti-tumor and other drugs.
    In the field of pesticides, with people's emphasis on the quality, safety and environmental protection of agricultural products, high-efficiency, low-toxicity and environmentally friendly pesticides have become the focus of research and development. This compound can be cleverly modified to prepare pesticide varieties with unique insecticidal, bactericidal or herbicidal activities, which may open up a new situation in the field of agricultural production.
    Furthermore, with the advancement of chemical technology, the synthesis method is continuously optimized, the cost may be gradually reduced, and the quality can be improved, which will also pave the way for its marketing activities. The industry has a constant demand for high-quality and low-cost raw materials. If the problems of production process can be properly solved, its competitiveness in the market will be greatly increased. Therefore, methyl 6-bromo-5-chloropyridine-3-carboxylate is expected to achieve remarkable results in the future market, and the prospects are quite promising in related industries such as medicine and pesticides.
    What are the manufacturers of Methyl 6-bromo-5-chloropyridine-3-carboxylate?
    I look at this "Methyl 6 - bromo - 5 - chloropyridine - 3 - carboxylate", which is an organic compound, or methyl 6 - bromo - 5 - chloropyridine - 3 - carboxylate in Chinese. As for the manufacturer, there are many in the world.
    In the field of chemical industry, there are many factories specializing in organic synthesis. Such as Sigma - Aldrich, which has a long-standing reputation for its wide range of chemical reagents and compounds, or the production of this substance.
    There is also Tixi Ai (TCI) company, which also focuses on the preparation of high-purity organic compounds. It often supplies various specialty chemicals for scientific research and industry. Methyl 6-bromo-5-chloropyridine-3-carboxylate may be one of its products.
    Furthermore, many chemical companies in China are involved in the production of such fine chemicals. For example, Shanghai search banner biochemical technology joint stock company, its products are rich, covering many categories of organic compounds, and may have output for this compound. There is also Shaoyuan Chemical Technology (Shanghai) Co., Ltd., which makes efforts in the field of organic synthesis reagents and may also be the manufacturer of this compound.
    All of these companies have a certain reputation and strength in the chemical industry, or are the producers of "Methyl 6 - bromo - 5 - chloropyridine - 3 - carboxylate".