3 Amino 2 Fluoro 6 Methylpyridine
pyridine pyrrole pyrazine piperidine piperazine

3-Amino-2-fluoro-6-methylpyridine

    Specifications

    HS Code

    846418

    Chemical Formula C6H7FN2
    Molecular Weight 126.13
    Appearance Solid (usually)
    Physical State At Room Temperature Solid
    Odor Typical organic chemical odor
    Melting Point Data specific to this compound needed
    Boiling Point Data specific to this compound needed
    Solubility In Water Limited solubility (organic compound)
    Solubility In Organic Solvents Soluble in common organic solvents
    Density Data specific to this compound needed
    Pka Data specific to this compound needed
    Flash Point Data specific to this compound needed

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    General Information
    Where to Buy 3-Amino-2-fluoro-6-methylpyridine in China?
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    Frequently Asked Questions

    As a leading 3-Amino-2-fluoro-6-methylpyridine 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 3-Amino-2-fluoro-6-methylpyridine?
    3-Amino-2-fluoro-6-methylpyridine is widely used in various fields of chemistry. Its primary use lies in the way of drug synthesis. With this substance as the cornerstone, it can build many biologically active molecular structures, making great contributions to the creation of new drugs and the treatment of diseases.
    In the field of medicinal chemistry, it is often a key intermediate. Through delicate chemical reactions, many compounds with unique pharmacological activities can be derived. For example, by reacting with specific reagents, different functional groups can be introduced, and then drug molecules that fit specific disease targets can be shaped, opening up new avenues for tackling difficult diseases.
    Furthermore, in the field of pesticide synthesis, it also plays an important role. It can be used as a starting material to synthesize pesticide products with high insecticidal and bactericidal properties. Such pesticides may have a specific mechanism of action against pests and pathogens due to their unique chemical structure, and have made outstanding achievements in ensuring agricultural harvests and protecting the healthy growth of crops.
    And in the field of materials science, 3-amino-2-fluoro-6-methylpyridine is also occasionally involved. Or because of its unique electronic structure and chemical properties, it can contribute to the synthesis of some functional materials, endow materials with different physical and chemical properties, such as optimization of optical and electrical properties, and inject new energy into the progress of materials science.
    What are the physical properties of 3-Amino-2-fluoro-6-methylpyridine?
    3-Amino-2-fluoro-6-methylpyridine is one of the organic compounds. Its physical properties are worth exploring.
    Under normal temperature and pressure, it is often in a solid state, mostly powdery, fine and uniform. In this state, it is easy to store and transport, and it is also easy to use and operate in many reactions.
    When it comes to melting point, it has been experimentally determined that its melting point is within a certain range. The characteristics of melting point are the key basis for the identification and purification of compounds. Different pure compounds have their own specific melting points, so that their purity can be identified. If impurities are mixed in, the melting point is often reduced and the melting range is lengthened. < Br >
    The boiling point is also an important physical property. The value of its boiling point depends on the temperature at which the compound changes from liquid to gaseous state. Knowing the boiling point is crucial in chemical operations such as distillation and separation, so that appropriate temperature conditions can be set accordingly to achieve effective separation of the compound from other substances.
    In terms of solubility, 3-amino-2-fluoro-6-methylpyridine exhibits a certain solubility in some organic solvents. In polar organic solvents such as methanol and ethanol, it can be moderately dissolved. This solubility provides the possibility of selecting a suitable reaction medium for its organic synthesis reaction. By selecting the right solvent, the reaction can proceed more smoothly, and the reaction rate and product yield can be improved.
    Density is also one end of the physical properties of the compound. Its density reflects the mass of the substance per unit volume. Although its density data may not often attract public attention, it is indispensable to consider density in industrial production, transportation and some precise experiments. For example, when piping liquid materials, density affects parameters such as fluid flow rate and pressure distribution.
    In addition, the physical properties such as odor and color of the compound cannot be ignored. Generally speaking, its odor may have a slight special odor, not a pungent or unpleasant smell. The color is usually white to off-white, and this color property can provide intuitive clues for researchers when initially observing and identifying compounds.
    In summary, the physical properties of 3-amino-2-fluoro-6-methylpyridine are of great significance in many fields such as chemical research and industrial production, laying the foundation for in-depth understanding and application of this compound.
    Is 3-Amino-2-fluoro-6-methylpyridine chemically stable?
    3-Amino-2-fluoro-6-methylpyridine is one of the organic compounds. The stability of its chemical properties is related to the bonding and structure of the atoms in the molecule. The stability of this compound depends on multiple factors.
    Looking at its structure, amino, fluorine atoms and methyl groups are attached to the pyridine ring. The pyridine ring has aromatic properties, and this aromatic structure gives the molecule a certain stability. The delocalization of electrons in the aromatic system reduces the molecular energy and tends to stabilize. The presence of amino groups, although they are power supply groups, can affect the electron cloud density distribution of the pyridine ring. However, under suitable conditions, they can also interact with other molecules or groups, which may affect their stability. Fluorine atoms have strong electronegativity, which can affect the electron distribution of the pyridine ring through induction effects, which in turn affects its stability. Methyl groups are relatively stable, connecting to the pyridine ring, or changing the spatial structure and electron cloud density of the molecule, which also contributes to the overall stability.
    However, its stability is also affected by external conditions. When the temperature increases, the thermal motion of the molecule intensifies, or the vibration of the chemical bond within the molecule is enhanced. If it reaches a certain extent, the chemical bond may be at risk of breaking, and the stability will decrease. In a specific chemical reaction environment, such as the presence of strong acids and bases, strong oxidizing agents or reducing agents, 3-amino-2-fluoro-6-methylpyridine molecules may participate in the reaction, which also shows the relative rather than absolute stability. The polarity, concentration and other factors of the solvent can also affect its stability. Polar solvents may form specific interactions with the compound molecules, changing the microenvironment around the molecule and affecting its stability.
    In summary, the stability of 3-amino-2-fluoro-6-methylpyridine depends on the interaction of its molecular structure and external environmental factors, and its stability cannot be generalized.
    What are 3-Amino-2-fluoro-6-methylpyridine synthesis methods?
    The synthesis of 3-amino-2-fluoro-6-methylpyridine has been known for a long time. In the past, chemical formulators used multi-cycle methods to prepare it.
    One is to start from the pyridine derivative. First, take an appropriate pyridine substrate, whose structure needs to be similar to the target product. Under specific reaction conditions, fluorine atoms are introduced with a halogenated reagent. This halogenation process requires fine temperature control and time control, and the choice of solvent is also crucial. The type of fluorine source also affects the effectiveness of the reaction. For example, the use of nucleophilic fluorine reagents allows fluorine atoms to precisely replace groups at specific positions in the substrate. < Br >
    After the fluorine atom is successfully introduced, the amination reaction is carried out. Ammonia or ammonia derivatives are often used as the amino source, and the amino group is combined with the pyridine ring by the power of the catalyst. The catalyst used is either a metal salt or an organic base, which can reduce the activation energy of the reaction and promote the smooth progress of the reaction. In this process, the nature of the solvent and the proportion of the reactants are the key factors and must be carefully prepared.
    Second, or starting from the methyl-containing pyridine, the methyl group is first used as the positioning group, and the specific position on the pyridine ring is activated by a specific reaction. Then, the target product is obtained by fluorination with a suitable fluorinating agent, and then by clever amination means. This approach focuses on the coordination of the reaction sequence and the reaction conditions of each step. After each step of the reaction, fine separation and purification are often required to remove impurities and maintain the purity of the product.
    In addition, there is a multi-step series reaction method. Several reaction steps are carried out continuously without the need to separate the intermediate product, which can simplify the operation process and improve the reaction efficiency. However, the series reaction requires more stringent reaction conditions, and the reaction conditions of each step need to be adapted to each other, so that the reaction can proceed smoothly in sequence, and finally 3-amino-2-fluoro-6-methylpyridine is obtained.
    What is the price range of 3-Amino-2-fluoro-6-methylpyridine in the market?
    3-Amino-2-fluoro-6-methylpyridine, the price of this product in the market varies due to changes in supply and demand, poor quality, and differences in purchase quantities. Looking at the situation of past transactions, if it is a small purchase, the price may be in the range of tens of yuan per gram. However, if it is purchased in large quantities for industrial grade, the price per kilogram may drop to hundreds of yuan.
    I have heard that in the trading place of fine chemical materials, those with high quality and high purity are slightly higher; while those with slightly lower purity are slightly cheaper. And different suppliers have different pricing. Large suppliers, due to the benefits of scale, may be able to offer better prices; while small suppliers, or due to cost constraints, have slightly higher prices.
    In addition, the supply and demand situation of the market also has a huge impact on its price. If there is a large increase in demand for 3-amino-2-fluoro-6-methylpyridine at a certain time, and the supply is limited, the price will rise; conversely, if the supply exceeds the demand, the price may decline. Therefore, to know the exact price, you must consult all suppliers in detail and consider carefully according to the current market situation.