6 Chloropyridine 2 Carboxamide
pyridine pyrrole pyrazine piperidine piperazine

6-chloropyridine-2-carboxamide

    Specifications

    HS Code

    582927

    Chemical Formula C6H5ClN2O
    Molar Mass 156.57 g/mol
    Appearance Solid
    Physical State At Room Temp Solid
    Solubility In Water Low solubility
    Solubility In Organic Solvents Soluble in some organic solvents
    Melting Point 146 - 148 °C
    Odor Odorless or mild odor
    Color White to off - white
    Purity Typically high purity in commercial products

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    General Information
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    Frequently Asked Questions

    As a leading 6-chloropyridine-2-carboxamide supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the chemistry of 6-chloropyridine-2-carboxamide?
    6-Chloropyridine-2-formamide is one of the organic compounds. Its chemical properties are very interesting, let me explain in detail.
    First of all, its structure is based on the pyridine ring, with chlorine atom substitution at the 6th position of the pyridine ring and formamide group at the 2nd position. This unique structure greatly affects its chemical properties.
    In terms of physical properties, 6-chloropyridine-2-formamide is usually solid and has different solubility in different solvents. Generally speaking, because it contains an amide group, it can form a hydrogen bond with water, so it has a certain solubility in water, but the solubility is not very high. In organic solvents such as ethanol and acetone, the solubility is relatively good.
    When it comes to chemical properties, the amide group is an important reaction check point. The amide group has a certain alkalinity and can react with acids to form corresponding salts. At the same time, the amide group can undergo hydrolysis reaction under specific conditions. In an acidic or alkaline environment, hydrolysis generates 6-chloropyridine-2-carboxylic acid and ammonia (or ammonium salt).
    Furthermore, the chlorine atom on the pyridine ring is also reactive. In the nucleophilic substitution reaction, the chlorine atom can be replaced by other nucleophilic reagents. For example, when reacting with sodium alcohol, chlorine atoms can be replaced by alkoxy groups to form corresponding ether derivatives; when reacting with amines, 6-aminopyridine-2-formamide compounds can be obtained.
    6-chloropyridine-2-formamide can also participate in a variety of organic synthesis reactions, such as reacting with carbonyl compounds such as aldose and ketone to construct more complex organic molecular structures. Its rich chemical properties make it widely used in many fields such as pharmaceutical chemistry and materials science.
    What are the main uses of 6-chloropyridine-2-carboxamide?
    6-Chloropyridine-2-formamide is one of the organic compounds. It has a wide range of uses and has applications in various fields.
    First in the field of medicinal chemistry, this compound is often a key intermediary. Pharmaceutical developers often use it as a starting material to synthesize drug molecules with specific biological activities through a series of chemical reactions. Because of its pyridine and amide structures, it endows molecules with unique physical and chemical properties, which are conducive to interacting with targets in organisms, and then achieving the effect of treating diseases. For example, the creation of some antibacterial drugs and anti-tumor drugs, 6-chloropyridine-2-formamide may be an important synthetic building block to help researchers build the required drug structure.
    Furthermore, in the field of pesticide chemistry, it also plays an important role. It can be used as raw materials to prepare pesticide products such as insecticides and fungicides. The combination of pyridine and amide groups can endow pesticide molecules with suitable lipophilic and hydrophilic properties, making them easy to attach to the surface of pests or pathogens, and can effectively penetrate biofilms and play an inhibitory or killing role. It is of great significance to ensure the healthy growth of crops and improve crop yield.
    In addition, in the field of materials science, 6-chloropyridine-2-formamide may participate in the synthesis of functional materials. By reacting with other compounds, materials with special optical, electrical or mechanical properties can be prepared, such as certain optoelectronic materials, polymer composites, etc. Its unique structure may introduce new characteristics to materials, expand the scope of application of materials, and have potential applications in electronic devices, optical instruments and other fields.
    In summary, 6-chloropyridine-2-formamide is an important compound in many fields such as medicine, pesticides, and materials science, and has made great contributions to the development of related fields.
    What is 6-chloropyridine-2-carboxamide synthesis method?
    6-Chloropyridine-2-formamide is also an organic compound. The method of its synthesis is often based on chemical principles, using suitable raw materials, according to specific steps.
    In the past, this substance was synthesized, or pyridine was taken as the base, and the chlorine atom was introduced at a specific position of the pyridine ring first, and then carboxylated at the ortho position, and then the amidation reaction was carried out. If pyridine is started, under appropriate reaction conditions, chlorine reagents, such as chlorine gas or chlorine-containing compounds, with the help of catalysts, the chlorine atom replaced the hydrogen atom at the sixth position of the pyridine ring to obtain 6-chloropyridine.
    Then, 6-chloropyridine and suitable carboxylation reagents, such as carbon dioxide and related initiators, are introduced into the second position of the pyridine ring under specific temperature and pressure conditions to obtain 6-chloropyridine-2-carboxylic acid.
    Finally, 6-chloropyridine-2-carboxylic acid and ammonia or amine compounds, under the action of condensing agents such as dicyclohexyl carbodiimide (DCC), the carboxyl group is converted into an amide group, and then 6-chloropyridine-2-formamide is obtained. < Br >
    Or there may be other methods, starting with different raw materials and transforming similar functional groups, such as starting with other derivatives containing pyridine rings, gradually modifying, introducing chlorine atoms, carboxyl groups and amide groups, which can also achieve the purpose of synthesis. At the time of synthesis, it is necessary to carefully observe the reaction conditions, such as temperature, pressure, type and dosage of catalyst, choice of solvent, etc., which are all related to the yield of the reaction and the purity of the product. Be sure to handle it carefully to obtain pure 6-chloropyridine-2-formamide.
    What is the price range of 6-chloropyridine-2-carboxamide in the market?
    6-Chloropyridine-2-formamide, the price in the market, it is difficult to have a fixed number. The change in its price is related to various reasons.
    First, the amount of quantity has a loud impact on the price. If there are many buyers, the demand is huge, and the supply in the market is slightly dwindled, the price will rise; on the contrary, if the demand is scarce, the stock is in the market, the supply exceeds the demand, and the price will drop from time to time.
    Both, the cost of production is also the main reason. If the price of raw materials rises or falls sharply, it will cause the cost of this material to change, which will lead to the price movement. And the complexity of the production process is related to the consumption of manpower and material resources, which can also make the price different. The more complicated the process, the higher the cost, and the higher the price.
    The price of the three varies from time to place. In different places, the price may be high or low due to the trend of supply and demand, transportation costs, and tax differences. And the flow of time, market changes, such as the rise and fall of the industry, and policy adjustments, can make the price fluctuate.
    As for the exact number, at present, it is difficult to have a uniform price in the market. Or in some transactions, the price varies due to the negotiation between buyers and sellers. Generally speaking, due to the above reasons, the price may fluctuate between a few yuan per gram and tens of yuan per gram. However, this is only a rough estimate, and the actual price needs to be studied in detail according to the current market conditions.
    What are 6-chloropyridine-2-carboxamide storage conditions?
    6-Chloropyridine-2-formamide is one of the organic compounds. Its storage conditions are crucial, and it is related to the stability and quality of this substance.
    First of all, it should be placed in a cool place, away from heat sources and open flames. Due to high temperature or open flames, it is easy to cause chemical reactions and cause deterioration. In summer, the indoor temperature should be controlled at around 20 degrees Celsius, and the warehouse should be well ventilated to prevent heat from accumulating.
    It needs to be kept dry. This compound is prone to moisture in contact with water, which in turn affects its chemical properties. Therefore, the humidity of the storage place should be maintained between 40% and 60%. If it is in a humid area, it can be placed around with a desiccant to absorb moisture.
    Furthermore, it should be sealed and stored. To prevent contact with air and oxidation reactions. The packaging must be tight and there is no risk of leakage. If it is bottled, the cap must be tightened; if it is bagged, the seal must also be tight.
    It must be stored separately from oxidants, acids, alkalis, etc. Contact with these substances is prone to violent reactions and endangers safety. Such as oxidants, they are highly oxidizing and coexist with them, or risk of combustion or explosion.
    Be careful when handling. Pack lightly and unload lightly to avoid collisions and falls, so as not to damage the packaging and affect the quality. < Br >
    Store 6-chloropyridine-2-formamide in a cool, dry, ventilated place, sealed and isolated from incompatible materials, and handle with care to ensure its quality and safety.