2 Amino 6 Chloro 3 Phenylpyridine
pyridine pyrrole pyrazine piperidine piperazine

2-Amino-6-chloro-3-phenylpyridine

    Specifications

    HS Code

    724910

    Chemical Formula C11H9ClN2
    Molar Mass 204.66 g/mol
    Appearance Solid (usually white or off - white powder)
    Melting Point Typically in a certain range (data needed for exact value)
    Boiling Point Data needed for exact value
    Solubility In Water Poor solubility in water (low polarity)
    Solubility In Organic Solvents Soluble in some organic solvents like ethanol, dichloromethane
    Odor Odorless or faint odor (usually)
    Pka Data needed for exact value
    Logp Data needed for exact value
    Density Data needed for exact value

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    General Information
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    Frequently Asked Questions

    As a leading 2-Amino-6-chloro-3-phenylpyridine 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-6-chloro-3-phenylpyridine?
    2-Amino-6-chloro-3-phenylpyridine is a class of organic compounds. It has a wide range of uses and plays an important role in many fields.
    In the field of medicinal chemistry, this compound is often used as a key intermediate. Due to its special chemical structure, it can be derived from various chemical reactions. It can be used to create new drugs and play an indispensable role in the development of drugs for specific diseases, such as the treatment of some difficult and complicated diseases. Doctors use it as a basis and skillfully chemically modify it, hoping to develop a good drug with significant efficacy and low side effects to relieve suffering for patients.
    In the field of materials science, 2-amino-6-chloro-3-phenylpyridine is also used. It can participate in the synthesis of functional materials and endow the materials with unique optical, electrical or mechanical properties. For example, when preparing new photoelectric materials, it can optimize the photoelectric conversion efficiency of the materials, so that the materials can exhibit better performance in photoelectric devices, such as Light Emitting Diode, solar cells, etc., thereby promoting the development and innovation of such technologies.
    Furthermore, in pesticide chemistry, this compound also has its uses. Or it can be used as an important raw material for the synthesis of high-efficiency and low-toxicity pesticides. Through rational design and synthesis, pesticide products with high selective poisoning effect on pests and small impact on the environment and non-target organisms are developed, which can help the efficient and sustainable development of agricultural production, ensure the harvest of crops, and resist the invasion of pests and diseases.
    In short, 2-amino-6-chloro-3-phenylpyridine is an important basic substance in many fields such as medicine, materials, and pesticides, and has made great contributions to the progress and development of related industries.
    What are 2-Amino-6-chloro-3-phenylpyridine synthesis methods?
    The synthesis method of 2-amino-6-chloro-3-phenylpyridine has been known for a long time. The common synthesis method is to use pyridine derivatives as the starting material and obtain it through multi-step reaction.
    First, a specific pyridine compound can be used to perform halogenation reaction first. Under suitable reaction conditions, the halogen atom is precisely introduced into the target position. This step requires controlling the reaction temperature, time and proportion of the reactants. The halogenation reagent used should be carefully selected according to the specific situation to ensure that the reaction is efficient and selective.
    Then, the amination step is carried out. This process also requires the selection of appropriate amination reagents, such as ammonia or its derivatives. During the reaction, the properties of the solvent, pH and other factors have a great influence on the reaction process and the purity of the product, which must be carefully regulated.
    Furthermore, the phenylation reaction is indispensable. With the help of suitable organometallic reagents or other phenylation reagents, the phenyl group is successfully connected to the pyridine ring. In this step of the reaction, the choice and dosage of the catalyst are crucial, which is related to the smooth progress of the reaction and the configuration of the product.
    During the synthesis process, each step of the reaction needs to be strictly monitored. Through thin-layer chromatography, nuclear magnetic resonance and other means, the reaction process and product purity can be carefully checked. And after each step of the reaction, the separation and purification of the product should not be underestimated. Recrystallization, column chromatography and other methods are often used to obtain pure 2-amino-6-chloro-3-phenylpyridine. In this way, the compound can be obtained after careful handling of various steps.
    What are the physical properties of 2-Amino-6-chloro-3-phenylpyridine?
    2-Amino-6-chloro-3-phenylpyridine is one of the organic compounds. Its physical properties are quite important, and it is related to many characteristics of this compound. The following is your detailed explanation.
    Looking at its properties, under normal temperature and pressure, 2-amino-6-chloro-3-phenylpyridine is often in a solid state. Its color may be white to white-like powder, which is convenient for preliminary identification by visual method. And its powder texture is relatively fine, this fine property also affects its treatment and application.
    When it comes to melting point, the melting point of this substance is a specific value, about a certain temperature range. Melting point is an inherent property of the substance. For 2-amino-6-chloro-3-phenylpyridine, accurately knowing its melting point is of great significance in identification and purity determination. When it is heated to a specific temperature, the substance gradually melts from solid to liquid, and this temperature is the melting point.
    Solubility is also a key physical property. 2-amino-6-chloro-3-phenylpyridine has different solubility in different solvents. In organic solvents such as ethanol and dichloromethane, it has certain solubility. However, in water, its solubility is relatively limited. This difference in solubility is an important guide for its separation, purification, and application in various chemical reaction systems.
    Furthermore, density is also a consideration. Although the specific density value may vary slightly due to measurement conditions, its density reflects the compactness of the substance. This property plays an important role in the conversion of mass and volume, as well as in the distribution of substances in the mixed system.
    also has vapor pressure. Although the vapor pressure is low at normal temperature and pressure, it also changes when the specific temperature and pressure conditions change. This property provides an important reference for its behavior in the vapor phase environment and for applications involving volatilization processes.
    To sum up, the physical properties of 2-amino-6-chloro-3-phenylpyridine, such as properties, melting point, solubility, density and vapor pressure, are of indispensable value in chemical research, chemical production and related application fields, helping researchers and producers to understand and effectively use this compound.
    What are the chemical properties of 2-Amino-6-chloro-3-phenylpyridine?
    2-Amino-6-chloro-3-phenylpyridine is an organic compound with unique chemical properties. This compound contains amino groups, chlorine atoms and phenyl groups, which give it a variety of reactive groups.
    In terms of alkalinity, amino groups are basic and can react with acids to form salts. Because nitrogen atoms have lone pairs of electrons, they can accept protons. Therefore, in an acidic environment, it is easy to combine with hydrogen ions to form ions with positive charge.
    Chlorine atoms have certain nucleophilic substitution activities. Due to the high electronegativity of chlorine atoms, the carbon-chlorine bond electron cloud is biased towards chlorine atoms, making carbon atoms partially positive. This structural feature makes it vulnerable to attack by nucleophiles, and nucleophilic substitution reactions occur, and chlorine atoms can be replaced by other nucleophilic groups.
    Furthermore, the presence of phenyl adds its conjugate system, which affects the electron distribution and stability of the molecule. Phenyl is an electron-rich system, which can affect the electron cloud density on the pyridine ring through conjugation and induction effects. This not only changes the physical properties of the compound, such as melting point, boiling point and solubility, but also affects the reaction check point and reactivity in chemical reactions.
    In addition, 2-amino-6-chloro-3-phenylpyridine may exhibit certain coordination capabilities. Both the nitrogen atom of the amino group and the nitrogen atom of the pyridine ring can act as coordination atoms to form complexes with metal ions. This property may have potential application value in the field of catalysis.
    2-amino-6-chloro-3-phenylpyridine has rich and diverse chemical properties, determined by its functional groups and molecular structure, and may have important uses in many fields such as organic synthesis and medicinal chemistry.
    What is the price range of 2-Amino-6-chloro-3-phenylpyridine in the market?
    The price of 2-amino-6-chloro-3-phenylpyridine in the market is difficult to determine. Its price often changes due to various reasons, such as the abundance of materials, the difficulty of production methods, the amount of demand, and the competition in the market.
    If you look at the past, when materials were available, the production method was simple, and the demand was not prosperous, the price was still easy. However, things are impermanent. If materials are suddenly scarce, or the production method is difficult, or the demand suddenly increases, the price must rise. And the competition among various houses in the city also makes the price state changeable.
    And due to the wide city, the price varies from place to place. In prosperous places, there is a lot of competition, or due to the convenience of logistics and information, the price may be stable; and in remote places, due to uneven supply and demand, difficult transshipment, the price may vary.
    It is difficult to say the approximate price, but it is difficult to be precise. If you force it, each gram may range from tens of gold to hundreds of gold, but this is only a guess. The actual price needs to be determined according to the current market conditions, the purity of goods, and the amount of purchases. We must not insist on this to break the market.