Alpha Chloromethyl 2 Methyl 5 Nitro 1h Imidazole 1 Ethanol
quinoline thiophene imidazole thiazole

alpha-(chloromethyl)-2-methyl-5-nitro-1H-Imidazole-1-ethanol

    • Product Name alpha-(chloromethyl)-2-methyl-5-nitro-1H-Imidazole-1-ethanol
    • Alias Metronidazole intermediate
    • Einecs 629-393-5
    • Mininmum Order 1 g
    • Factory Site West Ujimqin Banner, Xilingol League, Inner Mongolia, China
    • Price Inquiry sales9@alchemist-chem.com
    • Manufacturer Taiy Chemical
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    Specifications

    HS Code

    820553

    Chemical Formula C7H10ClN3O4
    Molecular Weight 235.626
    Appearance Typically a solid (description may vary based on purity and preparation)
    Melting Point Specific value depends on purity, but often in a certain temperature range
    Solubility Solubility characteristics in different solvents (e.g., slightly soluble in water, more soluble in some organic solvents)
    Density Density value can be measured and is substance - specific
    Boiling Point Boiling point depends on purity and pressure conditions
    Pka Acid - dissociation constant indicating its acidic or basic nature in solution
    Stability Stability under various conditions like heat, light, air
    Odor May have a characteristic odor (description based on sensory evaluation)

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    General Information
    Where to Buy alpha-(chloromethyl)-2-methyl-5-nitro-1H-Imidazole-1-ethanol in China?
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    Frequently Asked Questions

    As a leading alpha-(chloromethyl)-2-methyl-5-nitro-1H-Imidazole-1-ethanol 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 α - (chloromethyl) -2-methyl-5-nitro-1H-imidazole-1-ethanol?
    A certain person is the immortal in charge of alchemy, and today I will solve this doubt for you. The so-called "α - (chloromethyl) -2 - methyl - 5 - furyl - 1H - pyrazole - 1 - ethanol" is an organic compound with specific chemical properties, just like the unique compatibility of Dan formula.
    The activity of this compound originates from the interaction of various groups in its structure. Chloromethyl chloride, with electrophilicity, is like the yang-fire property in Dan, and is easy to react with electron-rich groups, such as nucleophilic substitution, which is an important chemical transformation path, just like refining drugs by fire, which drives the changes of various substances in Dan. < Br >
    The existence of 2-methyl and 5-furanyl groups affects the spatial conformation and electron cloud distribution of molecules. The hydrophobicity of methyl adding molecules is like mixing lipids in Dansha, changing its behavior in solvents; the conjugate structure of furanyl groups stabilizes molecular electrons, and it is similar to the stability of a cauldron furnace, so that the compound retains its inherent properties under certain conditions, but also the activity of surrounding groups is different due to conjugation.
    1H-pyrazole ring, containing nitrogen atoms, has basic and coordination ability, and can complex with metal ions, just like the spirit of Dan and the sympathetic energy of heaven and earth. And the electronic structure of the pyrazole ring makes the electron transfer of the whole molecule have a specific law, which affects its reactivity and selectivity.
    1-ethanol group, which increases the hydrophilicity of the molecule, just like adding spirit liquid to the medicinal pill, making a blind date with water. At the same time, the hydroxyl group can undergo esterification, oxidation and other reactions, providing a variety of possibilities for the derivative change of the compound, just like the nine revolutions of the alchemy, giving birth to a variety of changes.
    In summary, this compound exhibits rich chemical properties due to the synergy of various groups. In the fields of organic synthesis and drug research and development, Ruodan sand is precious and has extraordinary potential, which can lead to various wonderful changes.
    What are the common uses of alpha (chloromethyl) -2-methyl-5-nitro-1H-imidazole-1-ethanol?
    What you said is about the common use of "alpha - (methoxy) - 2 - methyl - 5 - chloro - 1H - indole - 1 - acetic acid". This compound has its uses in many fields.
    It is often a key intermediate in the development of medicine. Due to its unique chemical structure, it can be converted into drug molecules with specific pharmacological activities through clever synthesis paths. For example, for some inflammation-related diseases, using it as a starting material and going through a series of reactions may lead to anti-inflammatory drugs that help the human body resist the invasion of inflammation.
    It can also be seen in the agricultural field. Due to its structural properties, it may be derived from substances that regulate the growth of crops. It may affect the balance of plant hormones, help the root system of crops to be more developed, and the stems and leaves to be more lush, thereby improving the yield and quality of crops and ensuring the harvest of agriculture.
    Furthermore, in the way of scientific research and exploration, this compound is often an important object of chemical research. Chemists can expand the methods and theories of organic synthesis by in-depth investigation of its reaction characteristics. Observe its changes under different reaction conditions to develop novel synthesis strategies and contribute to the development of organic chemistry.
    In summary, "α - (methoxy) -2 - methyl - 5 - chloro - 1H - indole - 1 - acetic acid" plays an important role in many fields such as medicine, agriculture and scientific research, and plays an important role.
    What is the preparation method of α - (chloromethyl) -2-methyl-5-nitro-1H-imidazole-1-ethanol?
    To prepare α - (methoxy) - 2 - methyl - 5 - furyl - 1H - pyrazole - 1 - ethanol, you can follow the following ancient method.
    First take an appropriate amount of furan derivatives, placed in a clean kettle, dissolved in an alcohol solvent, the alcohol should be selected anhydrous ethanol, because of its mild nature and good compatibility with the reactants. Then add a specific base, such as potassium carbonate, the amount of base needs to be accurately weighed to ensure that the alkalinity of the reaction system is appropriate. The alkali can promote the subsequent nucleophilic substitution reaction. < Br >
    Then slowly add a halogenated hydrocarbon containing methoxy group. When the halogenated hydrocarbon is stored at low temperature, it is taken temporarily to maintain its activity. When adding time, it needs to be dripped slowly, and stirred at the same time, so that the reactants are fully contacted and the reaction is accelerated. The temperature is controlled in an appropriate range, about 40 to 50 degrees Celsius. This temperature range can make the reaction rate and product selectivity reach a balance. When stirring continuously, closely monitor the reaction progress. TLC can be used to observe the change of spots to clarify the degree of reaction.
    After the reaction is completed, pour the reaction liquid into ice water to precipitate the product. Then extract with an organic solvent, such as ethyl acetate, several times to extract the product. The organic phases are combined, dried with anhydrous sodium sulfate, and its moisture is removed. Then the organic solvent is removed by vacuum distillation to obtain the crude product.
    The crude product needs to be further purified. Column chromatography can be used. Appropriate silica gel is selected as the stationary phase, and petroleum ether and ethyl acetate are mixed into a mobile phase in a certain proportion. After this purification step, pure alpha - (methoxy) -2 - methyl - 5 - furyl - 1H - pyrazole - 1 - ethanol can be obtained. The whole process needs to strictly abide by the operating specifications, pay attention to temperature, dosage, time and other factors, in order to obtain satisfactory results.
    What are the safety precautions for alpha (chloromethyl) -2-methyl-5-nitro-1H-imidazole-1-ethanol?
    Fu α - (chloromethyl) -2 - methyl - 5 - furyl - 1H - indole - 1 - acetic acid, there are many safety precautions, and it should be carefully observed.
    This compound contains chloromethyl, which is active in nature and has high reactivity. It is easy to replace with many substances. During operation, the environment must be dry and clean. If the environment is heavy in moisture, chloromethyl may react with water, resulting in impure products and harmful by-products.
    Furthermore, methyl coexists with furyl, indolyl and other structures, and its chemical properties also affect each other. When heating, it is necessary to strictly control the temperature. Due to improper heating or reactions such as intramolecular rearrangement, the structure and purity of the product will be damaged. And this substance may have certain toxicity and irritation. During operation, use complete protective equipment, such as gas masks, protective gloves and protective clothing, to avoid contact with the skin and respiratory tract.
    The operating site should also be well ventilated to prevent its volatile gas from accumulating in the air and causing dangers such as poisoning. When using this compound, use a precise measuring tool and measure it accurately according to the experimental requirements. If the amount is not taken properly, or the reaction is deviated, the experimental results will be affected. And its storage should also be cautious. It should be placed in a cool, dry and dark place to prevent it from deteriorating due to light, moisture, temperature and other factors. In short, the operation of α - (chloromethyl) - 2 - methyl - 5 - furyl - 1H - indole - 1 - acetic acid, all the details are related to the experimental safety and results, should not be ignored.
    What is the price range of α - (chloromethyl) -2-methyl-5-nitro-1H-imidazole-1-ethanol in the market?
    I think what you are asking is about the price range of alpha - (methoxy) - 2 - methyl - 5 - furan - 1H - pyrazole - 1 - acetic acid in the market. However, the price of this unusual thing varies for many reasons.
    First, the purity of this thing is very important. If the purity is very high, it is almost flawless, its price must be high; if it contains impurities and the purity is at a loss, the price should drop. This is like beautiful jade. The price of flawless is high, and the price of flawed is low.
    Second, the state of supply and demand affects its price. If there are many people in the market, but there are few people to supply, such as water in a dry time, the price will rise; if the supply exceeds the demand, such as the valley of a good year, the price will decline.
    Furthermore, the cost of making this product is also the key. The price of raw materials, the method of production, and the cost of manpower all affect its final price. If raw materials are rare and difficult to find, the production is complicated and time-consuming, and the cost will be high, the price will follow.
    However, I have not obtained the exact price, so I can only say this. The market is impermanent, and the price is uncertain. You may need to visit the pharmacy in person and inquire about the merchants, or you can find out the actual price range. Or look at the records of various transactions and market reports to understand their approximate prices. I hope this will help you.