1 Methyl 5 Chloroimidazole
quinoline thiophene imidazole thiazole

1-Methyl-5-chloroimidazole

    Specifications

    HS Code

    186091

    Chemical Formula C4H5ClN2
    Molar Mass 116.55 g/mol
    Appearance Solid (usually white or off - white)
    Melting Point Specific value would require further research
    Boiling Point Specific value would require further research
    Solubility In Water Limited solubility, as it is an organic compound with non - polar groups
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone
    Density Specific value would require further research
    Pka Specific value would require further research
    Stability Stable under normal conditions, but may react with strong oxidizing or reducing agents

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    Frequently Asked Questions

    As a leading 1-Methyl-5-chloroimidazole 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 1-Methyl-5-chloroimidazole?
    1-Methyl-5-chlorimidazole is widely used in the field of organic synthesis. First, it is often a key intermediate in drug synthesis. Due to its unique structure, it can be spliced and combined with other compounds through various chemical reactions to prepare various drug molecules with specific biological activities. For example, in the development of antibacterial drugs, by participating in the reaction, a novel chemical framework with antibacterial efficacy can be constructed, providing a new choice for resisting the invasion of pathogens.
    In addition, it also has important functions in the field of pesticide creation. It can be used as a starting material for the synthesis of new pesticides, endowing pesticides with specific properties such as insecticidal, bactericidal, and weeding. Through ingenious chemical modification and reaction, pesticides are more targeted and efficient, and their impact on the environment is minimized, contributing to the green and efficient development of agricultural production.
    In addition, in the field of materials science, 1-methyl-5-chlorimidazole has also emerged. Or it can be used to prepare special functional materials, such as materials with special optical and electrical properties. Due to the characteristics of atoms and functional groups in the structure, the microstructure of the material can be regulated during the construction process of the material, thereby endowing the material with unique properties and meeting the strict requirements of materials in cutting-edge technologies such as electronics and optics.
    Overall, 1-methyl-5-chlorimidazole plays an indispensable role in many fields such as drugs, pesticides and materials due to its diverse reactivity and unique structure, injecting vitality into the innovation and development of various fields.
    What are the physical properties of 1-Methyl-5-chloroimidazole?
    1-Methyl-5-chlorimidazole is a kind of organic compound. Its physical properties are quite important, let me tell you in detail.
    Looking at its appearance, under normal circumstances, 1-methyl-5-chlorimidazole is mostly white to light yellow crystalline powder. This shape is easy to identify, and it is one of the major characteristics for identifying this substance in many chemical experiments and industrial applications.
    When it comes to melting point, the melting point of this compound is about a specific range. Melting point is the critical temperature at which a substance changes from solid to liquid. The melting point of 1-methyl-5-chlorimidazole is crucial for controlling its state in various reactions and processing processes. Knowing its melting point allows chemists to precisely adjust the reaction temperature according to different needs to achieve the best reaction effect.
    Furthermore, solubility is also one of its important physical properties. 1-methyl-5-chlorimidazole exhibits a certain solubility in common organic solvents. For example, in some polar organic solvents, it can dissolve well, which makes it more efficient in organic synthesis reactions as a reactant or intermediate, and participates in chemical reactions with the help of solvents. In water, its solubility is relatively limited. This difference provides a key basis for the selection of suitable solvent systems for separation, purification and practical applications.
    In addition, 1-methyl-5-chlorimidazole has certain stability. It can maintain its own chemical structure and properties at room temperature and pressure without the influence of special chemical reagents or conditions. However, in case of high temperature, strong oxidizing agent or specific chemical reaction conditions, its structure and properties may also change. The characteristics of this stability need to be carefully considered when storing and using the compound.
    In summary, the physical properties of 1-methyl-5-chlorimidazole, such as appearance, melting point, solubility and stability, play a pivotal role in its research, production and application in the field of chemistry. Chemists and related practitioners can only better use this substance and promote the progress and development of the chemical field if they are familiar with these properties.
    What are 1-Methyl-5-chloroimidazole synthesis methods?
    The synthesis method of 1-methyl-5-chlorimidazole has been known for a long time. In the past, many wise men in the field of organic synthesis have explored a lot, and their methods are gradually perfected.
    First, with imidazole as the base, first make imidazole meet the methylating reagent. For methylating reagents, such as iodomethane, in an appropriate solvent, add a base agent to promote its reaction. The base agent can be potassium carbonate, etc. In a warm environment, the two interact, and the nitrogen atom of imidazole nucleophilically attacks the methyl group of iodomethane to form 1-methylimidazole. Then, with an appropriate chlorination reagent, such as thionyl chloride or phosphorus oxychloride, the chlorine atom is introduced at the 5 position. In this chlorination step, the reaction conditions need to be controlled, and temperature and time are the main factors to prevent side reactions.
    Second, there are also compounds containing specific substituents as starting materials. For example, a raw material containing methyl groups and halogens is cyclized to form 1-methyl-5-chlorimidazole. This cyclization method requires precise regulation of the reaction conditions to achieve the desired cyclization effect. In the reaction system, the choice of catalyst is also crucial, whether it is a metal catalyst or an organic small molecule catalyst, which can affect the rate and selectivity of the reaction.
    Third, there are also those who use multi-step reactions to construct this structure. The prototype of the imidazole ring is first constructed through several steps of reaction, and then methyl and chlorine atoms are introduced in turn. In this process, the reaction of each step needs to be carefully controlled, and the separation and purification of the intermediate cannot be ignored before the pure 1-methyl-5-chlorimidazole can be obtained.
    All synthesis methods have advantages and disadvantages. In practical application, when the availability of raw materials, cost considerations, difficulty of reaction and purity of the product, etc., make a careful choice.
    What 1-Methyl-5-chloroimidazole need to pay attention to when storing and transporting
    1-Methyl-5-chlorimidazole is an organic compound. When storing and transporting, many matters must be paid attention to.
    First storage, this compound should be stored in a cool, dry and well-ventilated place. Because it is quite sensitive to heat, it is easy to decompose or other chemical reactions when heated, which will damage its quality. Therefore, the temperature must be controlled within an appropriate range, generally not exceeding 30 ° C. And the ambient humidity should not be high. If the humidity is too large, or the compound absorbs moisture, it will affect its purity and stability.
    Furthermore, 1-methyl-5-chlorimidazole should be kept away from fire and heat sources. This substance is flammable to a certain extent, in case of open flame, hot topic or risk of ignition. And it needs to be stored separately from oxidizing agents, acids, alkalis, etc. Because of its active chemical properties, contact with the above substances, or severe chemical reaction, resulting in safety accidents.
    As for transportation, also be cautious. Make sure that the packaging is complete and well sealed to prevent leakage. During transportation, avoid high temperature, sun and rain. The means of transportation should also be clean, dry, and free of other chemicals to avoid adverse reactions with 1-methyl-5-chlorimidazole.
    When handling, the operation should be light and unloaded, do not drop and heavy pressure, so as not to damage the packaging and cause material leakage. And transportation and storage personnel, when professionally trained, are familiar with the characteristics and safety precautions of the compound, and can properly deal with emergencies to ensure personnel safety and the environment.
    1-Methyl-5-chloroimidazole is harmful to the environment and human body
    In the case of 1-methyl-5-chlorimidazole, the harm to the environment and the human body must be investigated in detail. This substance may exist in the chemical industry, and its impact on the environment is primarily related to ecological balance. If it is released in nature, or pollutes soil, water sources and the atmosphere. In the soil, or modifies the soil, hinders plant growth, causes vegetation damage, and disrupts the ecological chain. Entering the water source endangers aquatic organisms, or causes water quality deterioration, affecting drinking and irrigation. Dispersed in the atmosphere, or becomes an aerosol, pollutes the air, and harms the respiratory tract.
    As for the human body, it may be toxic. It can enter the body through breathing, skin contact or ingestion. In the respiratory system, it may cause cough, asthma, and damage to lung function. Contact with the skin, or cause allergies, burns, invasion of the human body, or fatigue of organs, such as liver and kidney, affecting metabolic detoxification. Long-term exposure may increase the risk of cancer and interfere with normal cell division.
    Of course, the current investigation of its hazards may not be complete. Many effects vary depending on the amount, time and environment. Therefore, when using and treating this substance, it is necessary to be cautious, follow strict regulations, and take proper protection to reduce the harm to the environment and human body.