4 Chloro 1 Dimethylaminosulfonyl 5 P Tolyl Imidazole 2 Carbonitrile
quinoline thiophene imidazole thiazole

4-CHLORO-1-(DIMETHYLAMINOSULFONYL)-5-(P-TOLYL)IMIDAZOLE-2-CARBONITRILE

    Specifications

    HS Code

    557456

    Chemical Formula C13H13ClN4O2S
    Molecular Weight 324.79
    Appearance Solid (usually)
    Color Typically white to off - white
    Melting Point Specific value would require experimental determination
    Solubility In Water Low solubility in water
    Solubility In Organic Solvents May be soluble in some polar organic solvents like DMSO
    Pka Data specific to its acidic or basic functional groups would need to be determined experimentally
    Logp Value related to its lipophilicity would need experimental determination

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    General Information
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    Frequently Asked Questions

    As a leading 4-CHLORO-1-(DIMETHYLAMINOSULFONYL)-5-(P-TOLYL)IMIDAZOLE-2-CARBONITRILE 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 chemical structure of 4-CHLORO-1- (DIMETHYLAMINOSULFONYL) -5- (P-TOLYL) IMIDAZOLE-2-CARBONITRILE?
    This is the chemical structure of 4-chloro-1- (dimethylaminosulfonyl) -5- (p-toluphenyl) imidazole-2-formonitrile. Looking at the name of this compound, it can be known that its structure is complex and contains multi-functional groups.
    The main structure of this compound is an imidazole ring, and its 2-position is connected with a formonitrile group. This nitrile group has high reactivity and is often used as a key intermediate in organic synthesis. It can be converted into various functional groups by hydrolysis, reduction and other reactions. < Br >
    1-site is connected to a dimethylaminosulfonyl group. This group affects the molecular electron cloud distribution due to the strong electron-withdrawing properties of the sulfonyl group and the electron-giving properties of the dimethylamino group, which in turn affects the chemical activity and physical properties of the compound, such as solubility and stability.
    5-site is connected to p-toluene. The benzene ring structure makes the molecule have a certain rigidity and conjugate system, which affects the spatial configuration and electron delocalization of the molecule. It also plays an important role in the spectral properties and reaction selectivity of the compound. The chlorine atom at the 4-position of
    has high activity and can participate in various reactions such as nucleophilic substitution, providing the possibility for the introduction of other functional groups, which greatly enriches the chemical properties and synthesis paths of compounds.
    In summary, the chemical structure of 4-chloro-1- (dimethylaminosulfonyl) -5- (p-toluene) imidazole-2-formonitrile is composed of imidazole ring as the core, which is connected to formonitrile, dimethylaminosulfonyl, p-toluene and chlorine atoms. The interaction of each functional group endows the compound with unique chemical and physical properties, and has potential application value in organic synthesis, medicinal chemistry and other fields.
    What are the physical properties of 4-CHLORO-1- (DIMETHYLAMINOSULFONYL) -5- (P-TOLYL) IMIDAZOLE-2-CARBONITRILE?
    4-Chloro-1- (dimethylaminosulfonyl) -5- (p-toluphenyl) imidazole-2-formonitrile, this is an organic compound. Its physical properties are quite important and are related to applications in many fields.
    Looking at its properties, under normal temperature and pressure, it is mostly in a solid form. This is a common physical appearance, or a crystalline state, which is orderly arranged due to intermolecular interactions.
    Talking about the melting point, this compound has a specific melting point, and the melting point value is of great significance in related research and industrial applications. The determination of the melting point helps to distinguish the purity of the substance. If the purity is high, the melting point range is narrow and approaches the theoretical value; if it contains impurities, the melting point decreases and the range becomes wider.
    Re-discussion of solubility, in organic solvents such as ethanol, dichloromethane, etc., or exhibit a certain solubility. This property has a great influence on the choice of reaction solvent in organic synthesis reactions. Suitable solvents can promote full contact with the reactants and improve the reaction rate and yield. In water, its solubility may be poor. Due to the large proportion of hydrophobic parts in the molecular structure, it interacts weakly with water molecules.
    In addition, its density is also an important physical property. The value of density reflects the quality of the substance per unit volume. In chemical production, storage and transportation, density factors need to be considered to ensure operation safety and product quality.
    The physical properties of 4-chloro-1- (dimethylaminosulfonyl) -5- (p-toluene) imidazole-2-formonitrile, such as properties, melting point, solubility and density, play a key role in chemical research, industrial production and many other aspects, laying the foundation for in-depth understanding and rational use of this compound.
    What is the main use of 4-CHLORO-1- (DIMETHYLAMINOSULFONYL) -5- (P-TOLYL) IMIDAZOLE-2-CARBONITRILE?
    4-Chloro-1- (dimethylaminosulfonyl) -5- (p-toluene) imidazole-2-formonitrile, this is an organic compound. Looking at its structure and characteristics, its main uses are very wide.
    In the field of pharmaceutical research and development, it may have potential medicinal value. Because of its unique chemical structure, it may have effects on specific biological targets, laying the foundation for the creation of new drugs. If further research is conducted, it can be used to fight certain diseases, or as a lead compound. After structural modification and optimization, drugs with better efficacy and less side effects can be derived.
    In the field of pesticides, it also has important uses. Due to its chemical properties, or the ability to inhibit or kill certain pests and pathogens, it can be developed as a new type of pesticide, which can help agricultural production, improve crop yield and quality, and reduce the negative impact on the environment.
    In the field of materials science, it may participate in the synthesis of new materials. Because it can undergo specific chemical reactions with other substances, or help to construct materials with special properties, such as materials with unique electrical, optical or mechanical properties, to meet the needs of different fields for special materials.
    In addition, in organic synthetic chemistry, this compound is often used as a key intermediate. Due to its structure containing a variety of active functional groups, it can participate in various organic reactions. By ingeniously designing the reaction path, it can be transformed into organic compounds with more complex structures and unique functions, which greatly expands the scope and possibility of organic synthesis and promotes the development of organic chemistry.
    What are the synthesis methods of 4-CHLORO-1- (DIMETHYLAMINOSULFONYL) -5- (P-TOLYL) IMIDAZOLE-2-CARBONITRILE?
    The synthesis of 4-chloro-1- (dimethylaminosulfonyl) -5- (p-toluene) imidazole-2-formonitrile is quite complicated. The methods of the past mostly follow the old methods. First, p-toluenoacetonitrile is often used as the starting material, and it is first combined with the halogen to form a specific intermediate. This process needs to be carried out in a specific solvent, such as ether or aromatic hydrocarbon solvents, at a suitable temperature and under alkali-catalyzed conditions.
    Then, the intermediate interacts with the reagents containing chlorine and sulfonyl groups. This step of the reaction is crucial to the control of the reaction conditions. If the temperature is too high or too low, the selectivity and yield of the reaction may be affected. The chemical environment involved in the reaction, such as pH and reaction time, also needs to be carefully regulated.
    Furthermore, after several steps of the reaction, the product needs to be separated and purified. Commonly used methods include column chromatography, recrystallization, etc. Column chromatography uses the difference in the distribution coefficient of different substances between the stationary phase and the mobile phase to achieve the separation of substances. Recrystallization uses the difference in the solubility of the product and impurities in different solvents with temperature to purify the product.
    However, although the ancient method is effective, it has many drawbacks. The reaction steps are complicated, take a long time, and some reagents are highly toxic and unfriendly to the environment. Therefore, current research is mostly dedicated to finding greener and more efficient synthesis paths. Or explore new catalysts to improve the efficiency and selectivity of the reaction; or choose more environmentally friendly solvents and raw materials to adapt to the current situation and conform to the concept of green chemistry.
    4-CHLORO-1- (DIMETHYLAMINOSULFONYL) -5- (P-TOLYL) IMIDAZOLE-2-CARBONITRILE What are the precautions during storage and transportation?
    4 - CHLORO - 1 - (DIMETHYLAMINOSULFONYL) - 5 - (P - TOLYL) IMIDAZOLE - 2 - CARBONITRILE is an organic compound. During storage and transportation, many matters need to be paid attention to in order to ensure safety and quality.
    When stored, the first environment is dry. This compound is afraid of moisture. If the environment is humid, it may cause chemical reactions such as hydrolysis, which will damage its purity and quality. It must be placed in a dry and ventilated place, away from water sources and where water vapor is easy to gather. And it needs to be in a cool place, away from direct sunlight. Light or luminescent chemical reactions cause its structure to change. Temperature is also critical. It should be controlled in a suitable range. Usually room temperature or slightly lower is appropriate. It must not be placed in a high temperature environment to avoid accelerating its decomposition.
    Furthermore, the storage place should be clean and clean, away from all kinds of impurities and pollutants. Because of its active chemical nature, or react with impurities, it affects the quality. And it should be placed separately from other chemicals, especially avoid contact with strong oxidants, strong acids, strong bases, etc. Because its structure contains a variety of functional groups, encountering such substances may cause severe reactions.
    When transporting, the packaging must be sturdy. Appropriate packaging materials should be selected to resist vibration, collision and friction, and prevent its leakage. At the same time, the compound information should be clearly marked on the outside of the package, such as name, nature, hazard warning, etc., so that the transporters and regulators can be clear. During transportation, it is also necessary to ensure that the environment is stable and avoid large fluctuations in temperature and humidity. The transportation tools need to be clean and free of other chemicals to prevent cross-contamination.
    The escort personnel must also undergo professional training and be familiar with the properties of this compound and emergency treatment methods. If there is an accident such as leakage during transportation, they can respond quickly and correctly to minimize the harm. In this way, Fang Guarantee 4 - CHLORO - 1 - (DIMETHYLAMINOSULFONYL) - 5 - (P - TOLYL) IMIDAZOLE - 2 - CARBONITRILE is safe and stable during storage and transportation.