3 Pyridinecarboxaldehyde 2 6 Difluoro 9ci
pyridine pyrrole pyrazine piperidine piperazine

3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI)

    Specifications

    HS Code

    765540

    Chemical Formula C6H3F2NO
    Molar Mass 143.09 g/mol
    Appearance Solid (usually)
    Solubility In Water Limited solubility due to non - polar fluorine and aromatic components
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform, etc. due to its organic nature
    Flash Point Unknown, but as an organic compound, it may be flammable under certain conditions
    Pka No widely - known pKa value, but the aldehyde and pyridine groups can influence acidity - basicity

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    General Information
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    Frequently Asked Questions

    As a leading 3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI) 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 chemical properties of 3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI)?
    3-Pyridyl formaldehyde, 2,6-difluoro- (9CI), the chemical properties of this substance are quite important. Its appearance may be colorless to light yellow liquid or solid, with a special odor.
    From the perspective of physical properties, its melting point, boiling point and other properties will vary depending on the arrangement and interaction of atoms in the molecule. Due to the fluorine atom, fluorine has strong electronegativity, causing the molecular polarity to change, which affects its solubility. Or in organic solvents, such as ethanol and ether, it has good solubility, but its solubility in water may be limited.
    When it comes to chemical properties, aldehyde groups are active functional groups. Many reactions can occur, such as oxidation reactions, which can be oxidized to corresponding carboxylic acids; reduction reactions, which can be reduced to alcohols. And the aldehyde group can react with compounds containing active hydrogen, such as amines and alcohols, to form new compounds. The existence of the pyridine ring also gives it unique chemical activity. The pyridine ring has a certain alkalinity and can react with acids to form salts. At the same time, although the fluorine atoms at the 2,6-position increase the molecular stability, they can also undergo substitution reactions under specific conditions and be replaced by other functional groups, thereby deriving a variety of compounds. The diversity of its chemical properties provides many possibilities for the field of organic synthesis, which can be used to prepare drugs, materials and other compounds.
    What are the main uses of 3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI)
    3-Pyridine formaldehyde, 2,6-difluoro- (9CI), is widely used. In the field of medicinal chemistry, it is often a key intermediate for the creation of new drugs. Due to its unique chemical structure, it can interact with many bioactive molecules, enabling chemists to design and synthesize compounds with specific pharmacological activities, such as antibacterial, antiviral and even anticancer drugs.
    In materials science, it also plays an important role. It can be introduced into polymer materials through specific chemical reactions to improve the properties of materials. For example, to enhance the stability, solubility or optical properties of materials, thereby expanding the application of materials in electronic devices, optical instruments, etc.
    In the field of organic synthesis, this substance is an extremely important starting material. Chemists use various organic reactions, such as condensation reactions, addition reactions, etc., to construct complex organic molecular structures. The aldehyde groups and pyridine rings it contains provide many activity check points for reactions, and can prepare organic compounds with diverse structures, enriching the pathways and product types of organic synthesis. In short, 3-pyridyl formaldehyde, 2,6-difluoro- (9CI) play a key role in many scientific fields, promoting research and development in various fields.
    What is the synthesis method of 3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI)
    There are currently 3-pyridine formaldehyde, 2,6-difluoro- (9CI), and a method for its synthesis is desired. The synthesis of this compound may be initiated by raw materials containing pyridine structures.
    Take the appropriate pyridine derivative first, and reserve the transformable group at the corresponding position. For example, the 2,6 positions on the pyridine ring can be pre-introduced with halogenated groups, and a suitable halogenated reagent, such as a fluorine-containing halogenated agent, can be used under suitable reaction conditions to introduce fluorine atoms at the 2,6 positions. This reaction may require a specific catalyst, and the reaction temperature, time and other conditions also need to be precisely controlled to ensure the accurate introduction of fluorine atoms and the least side reactions. < Br >
    After the fluorine atoms at positions 2 and 6 are introduced, the aldehyde group can be constructed. It can be achieved by a suitable functional group conversion reaction, such as the corresponding alcohol derivatives, through oxidation reaction, a suitable oxidizing agent, such as a mild oxidizing reagent, is selected in a suitable solvent system to oxidize the alcohol hydroxyl group to the aldehyde group. During the reaction process, the degree of reaction needs to be closely monitored to prevent excessive oxidation to form carboxylic acids and other by-products. In this step, with reasonable planning and fine operation, 3-pyridine formaldehyde, 2,6-difluoro- (9CI) can be synthesized.
    What is the market price of 3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI)?
    I don't know the exact market value of 3 - Pyridinecarboxaldehyde, 2, 6 - difluoro- (9CI). However, if you want to know it, you can follow the way.
    First, it is based on the website of the chemical supplier. Nowadays, all chemical suppliers have a platform to list their products and prices. You can enter the name of this product and check the price of each supplier. Different suppliers may have different prices due to brand, quality, and packaging quality. If a supplier pays attention to high-quality products, its price may be higher than the average price; or because of the large package, it is lower or lower than the small package.
    Second, to the chemical supplier. If you send it to the seller, you can know the latest price of this product, and you can get discounts, promotions, etc. The seller can also provide the right solution and price construction according to your needs.
    Third, it is possible to exchange information with other people, chemical researchers, etc. They may have bought this product, and can share its price and payment price to help you have a general understanding of the city. However, it should be noted that the price they mentioned may vary depending on the price, place and quantity. < Br >
    In order to obtain the 3 - Pyridinecarboxaldehyde, 2, 6 - difluoro - (9CI) precision market, we can only know the market situation through multiple explorations and comparisons, so as to get it in line.
    3-Pyridinecarboxaldehyde, 2,6-difluoro- (9CI) What are the precautions during storage and transportation?
    3-Pyridyl formaldehyde, 2,6-difluoro- (9CI) This material needs to pay attention to many matters during storage and transportation.
    When storing, choose the first environment. You should find a cool, dry and well-ventilated place. Because the shade can avoid the change of its characters caused by high temperature, the drying can avoid the erosion of humid gas, and the good ventilation can disperse the harmful gases that may accumulate and maintain its chemical stability. Do not place it in direct sunlight, sun exposure or cause photochemical reactions to damage its quality.
    Furthermore, the storage container should not be underestimated. A suitable sealed container must be used to prevent excessive contact with air. Due to the oxygen, water vapor and other components in the air, or chemical reaction with the substance, causing it to deteriorate.
    During transportation, it is important to be stable. Make sure that the packaging is sturdy to avoid bumps and collisions to prevent the container from being damaged and the substance from leaking. And the transportation vehicle should have appropriate temperature control and ventilation equipment to maintain a stable environment. If the transportation environment is extremely hot, the substance may evaporate and even cause safety hazards; if the environment is too humid, it may also be contaminated with water vapor, affecting the quality.
    At the same time, the transportation personnel should also be familiar with the characteristics of the substance and emergency treatment methods. In the event of an emergency such as a leak, they can respond quickly and appropriately to reduce the harm. This is all due attention to the storage and transportation of 3-pyridyl formaldehyde, 2,6-difluoro- (9CI).