2 Methylsulfony 4 5 Dimethoxypyridine
pyridine pyrrole pyrazine piperidine piperazine

2-Methylsulfony-4,5-Dimethoxypyridine

    Specifications

    HS Code

    419547

    Chemical Formula C8H11NO4S
    Molecular Weight 217.24
    Appearance Typically a solid (appearance can vary based on purity and preparation)
    Melting Point Data may vary by source, specific value needs experimental determination
    Solubility In Water Limited solubility, being an organic compound with polar and non - polar regions
    Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform due to its organic nature
    Pka No standard value available, pyridine nitrogen can be basic
    Logp Value related to its lipophilicity, needs experimental determination
    Stability Stable under normal conditions if protected from strong oxidizing and reducing agents

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    Frequently Asked Questions

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    What is the main use of 2-Methylsulfony-4,5-Dimethoxypyridine?
    2-Methylsulfonyl-4,5-dimethoxypyridine is widely used in the field of organic synthesis. It is often a key intermediate involved in the preparation of many organic compounds.
    From the perspective of pharmaceutical chemistry, this compound may be an important building block for the construction of drug molecules. Because of its special chemical structure, it can be chemically modified to introduce different functional groups, resulting in substances with specific pharmacological activities. For example, it can be linked to compounds containing active groups by specific reactions to prepare new drug molecules with potential therapeutic effects, which may play an important role in the development of anti-cancer, anti-infection and other drugs.
    In the field of materials science, 2-methylsulfonyl-4,5-dimethoxypyridine is also useful. Or it can participate in the synthesis of some functional materials, giving the material special properties through its unique structure, such as improving the electrical properties, optical properties or stability of the material. For example, in the synthesis of organic optoelectronic materials, the introduction of this structural unit may regulate the charge transport ability of the material, thereby optimizing the performance of the material in Light Emitting Diode, solar cells and other devices.
    Furthermore, in the field of fine chemical synthesis, it is also an important raw material. It can be used to prepare fine chemicals with special functions, such as special catalysts, ligands, etc. Fine chemicals with excellent properties can be synthesized by ingeniously designing reaction paths and utilizing their structural characteristics to meet different industrial and scientific needs. In short, 2-methylsulfonyl-4,5-dimethoxypyridine has important value and wide application in many fields related to organic synthesis.
    What are the synthesis methods of 2-Methylsulfony-4,5-Dimethoxypyridine
    There are various methods for synthesizing 2 - Methylsulfony - 4,5 - Dimethoxypyridine. One common method is to start with 4,5 - dimethoxypyridine and obtain it through a sulfonylation reaction. The method is to prepare an appropriate amount of 4,5 - dimethoxypyridine, place it in an adapter, and dissolve it in a suitable solvent, such as dichloromethane. Then, under low temperature and stirring, methylsulfonyl chloride is slowly added, and an acid binding agent, such as triethylamine, is applied to remove the acid in the reaction system and promote the anterograde of sulfonylation. This reaction needs to be moderately controlled at temperature, and the duration should be appropriate. After the reaction is completed, it can be separated and purified by conventional methods, such as column chromatography, to obtain pure 2-Methylsulfony-4,5-Dimethoxypyridine.
    There is also a way of synthesis, using other substances as the starting material, through a multi-step reaction. For example, an intermediate containing a pyridine ring is first prepared, and there are modifiable groups on it. After methoxidization, a methoxy group is introduced, and then a sulfonation step is performed. When methoxidizing, choose a suitable methoxy reagent, such as a combination of iodomethane and potassium carbonate, and react under appropriate solvents and conditions. Then sulfonylation according to the previous method can also obtain the target product.
    This synthesis method requires attention to the control of reaction conditions. The purity of raw materials, the amount of reagents, temperature, and duration are all factors related to the yield and purity of the product. It needs to be done carefully to make the synthesis smooth and obtain the desired 2-Methylsulfony-4,5-Dimethoxypyridine.
    What are the physical properties of 2-Methylsulfony-4,5-Dimethoxypyridine
    2-Methylsulfonyl-4,5-dimethoxypyridine is a kind of organic compound. Its physical properties are quite important and are related to many chemical and industrial applications.
    When it comes to appearance, this substance is often white to light yellow solid or crystalline powder. Its appearance is fine and uniform in texture. This characteristic is convenient for it to be evenly dispersed in various reaction systems to facilitate the progress of the reaction.
    Looking at its melting point, it is about a specific temperature range. This temperature range is a key indicator for identifying this substance and considering its heating behavior. Near the melting point, its solid state and liquid state are transformed into each other, and this phase transition has a great impact on its processing and use. The boiling point of
    is also an important physical property. Under specific pressure conditions, the boiling temperature of this substance can reveal the conditions required for separation operations such as distillation, and also reflect the strength of its intermolecular forces.
    In terms of solubility, it has a certain solubility in organic solvents, such as common ethanol, ether, etc. This property makes it able to be used as a reactant or intermediate in a variety of organic synthesis reaction systems. With the help of organic solvents, it participates in various chemical reactions and promotes the smooth progress of the reaction. In water, its solubility is relatively limited, and this difference provides a basis for the separation and purification of this substance from mixed systems. < Br >
    Density cannot be ignored either. The value of its density determines its distribution when mixed with other substances, and has a profound impact on operations involving liquid-liquid separation or precise control of mixing ratios.
    In addition, the stability of this substance is acceptable under normal conditions. In case of extreme conditions such as high temperature, strong oxidants or strong acids and bases, its chemical structure may change. Therefore, when storing and using, it is necessary to properly control the environmental conditions to ensure the stability of its physical properties, so as to ensure the normal development of related chemical reactions and industrial applications.
    What are the chemical properties of 2-Methylsulfony-4,5-Dimethoxypyridine
    2-Methylsulfonyl-4,5-dimethoxypyridine, this is an organic compound with unique chemical properties. Its properties are related to many aspects and are crucial in the field of chemical synthesis.
    Let's talk about the physical properties first. At room temperature, 2-methylsulfonyl-4,5-dimethoxypyridine is often solid and has a certain melting point due to intermolecular forces. However, the exact value of the melting point will vary with the purity of the compound. The higher the purity, the closer the melting point to the theoretical value. In addition, its solubility is also a key physical property. The compound has good solubility in organic solvents such as dichloromethane, N, N-dimethylformamide (DMF). Due to the interaction of suitable groups in the molecular structure with organic solvents, intermolecular forces can be formed to help it dissolve; while the solubility in water is relatively poor, because water is a polar solvent, the intermolecular forces with the compound are weak.
    Re-discussion of chemical properties, the presence of its pyridine ring makes the compound alkaline. The nitrogen atom on the pyridine ring has a lone pair of electrons, which can accept protons and react with acids to form salts. And because there are methylsulfonyl and dimethoxy substituents on the ring, the electron cloud density of the pyridine ring is affected, and the reactivity is changed. Methylsulfonyl is an electron-withdrawing group, which will reduce the electron cloud density of the pyridine ring, making the electrophilic substitution reaction more difficult; dimethoxy is an electron-supplying group, which can cancel the influence of methylsulfonyl to a certain extent, so that the electron cloud density at some positions of the pyridine ring is relatively increased. Under certain conditions, the electrophilic substitution reaction may preferentially occur at the position affected by the dimethoxy group.
    In addition, the methyl sulfonyl group of 2-methylsulfonyl-4,5-dimethoxypyridine is also reactive and can undergo a variety of reactions, such as substitution reactions with nucleophiles, nucleophiles attack sulfur atoms, causing the substituents on the sulfonyl group to be replaced, thereby constructing new compounds. This property provides rich possibilities for organic synthesis.
    In short, 2-methylsulfonyl-4,5-dimethoxypyridine has rich chemical properties. In the field of organic synthesis chemistry, chemists can design and implement the synthesis of many complex organic compounds according to its characteristics to meet the needs of medicine, materials and other fields.
    What is the price range of 2-Methylsulfony-4,5-Dimethoxypyridine in the market?
    I don't know what the price range of 2 - Methylsulfony - 4,5 - Dimethoxypyridine is in the market. The price of these substances often changes due to various reasons, such as the quality and quality, the amount of quantity, the difficulty of making, the supply and demand of the market, etc. To know the price, you can get a near-real price when you check the chemical raw material trading platform, consult the chemical product supplier, or refer to the relevant market survey report. This way, you can get accurate market conditions and know the approximate price. However, it is difficult to determine the price range based on empty words.