4 Amino 5 Imidazolecarboxamide Monohydrate
quinoline thiophene imidazole thiazole

4-Amino-5-imidazolecarboxamide monohydrate

    Specifications

    HS Code

    243352

    Chemical Formula C4H7N3O2·H2O
    Molecular Weight 145.13 g/mol
    Appearance White to off - white crystalline powder
    Solubility In Water Soluble
    Melting Point 172 - 175 °C
    Odor Odorless
    Ph In Solution Near - neutral
    Purity Typical High (e.g., 98%+)
    Stability Stable under normal conditions
    Storage Conditions Store in a cool, dry place

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    General Information
    Where to Buy 4-Amino-5-imidazolecarboxamide monohydrate in China?
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    Frequently Asked Questions

    As a leading 4-Amino-5-imidazolecarboxamide monohydrate 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 4-Amino-5-imidazolecarboxamide monohydrate?
    4-Amino-5-imidazole formamide monohydrate, this is a unique chemical substance. It has specific chemical properties, and its appearance is often white to white crystalline powder. It is quite stable at room temperature and pressure.
    When it comes to solubility, it can be slightly soluble in water. This property is quite critical in many chemical and biological experiments, because its degree of solubility will affect the process and effect of related reactions. Its poor solubility in organic solvents, such as ethanol, ether, etc., makes it unique in separation, purification and other operations.
    From the perspective of chemical activity, the amino group and imidazole ring structure of 4-amino-5-imidazole formamide monohydrate give it a certain reactivity. The amino group can participate in a variety of substitution reactions, and can react with acids, acyl halides, etc., to form corresponding amide derivatives. The imidazole ring has a certain alkalinity and can bind to protons, which plays a unique role in acid-base balance-related reactions. And the carboxylamide group of the substance can also participate in condensation and other reactions, and is widely used in the field of organic synthesis.
    Furthermore, this compound is also of great significance in the field of biology. Studies have found that it has an impact on some cellular metabolic processes, or can be used as a biological activity regulator, participating in key physiological activities such as intracellular signaling, providing new directions and ideas for biomedical research.
    What are the main uses of 4-Amino-5-imidazolecarboxamide monohydrate?
    4-Amino-5-imidazolecarbonamide monohydrate has a wide range of uses. In the field of medicine, it is often a key raw material for the synthesis of important drugs. For example, in the development of anti-tumor drugs, this compound can be used as a starting material. After multiple steps of delicate chemical reactions, it can derive a molecular structure with unique anti-tumor activity to help doctors overcome cancer diseases. It also plays a key role in biochemical research. Because of its unique structure, it can mimic specific metabolites or signaling molecules in organisms, allowing researchers to explore the mysteries of complex physiological processes such as cell metabolism and signal transduction. And in the field of agriculture, it can be converted into plant growth regulators after specific treatment to help crops thrive, or enhance their ability to resist pests and diseases, and escort the harvest. In industrial production, the preparation of some fine chemical products also relies on this substance to improve the performance and quality of the product. In short, 4-amino-5-imidazole formamide monohydrate plays an indispensable role in many aspects of medicine, biochemistry, agriculture and industry, as a key link in the chain of operation in many fields.
    What is the production method of 4-Amino-5-imidazolecarboxamide monohydrate?
    The preparation method of 4-amino-5-imidazole formamide monohydrate is particularly crucial, and it is related to its application in many fields. In the past, the preparation of this compound followed the traditional method.
    First, the corresponding imidazole derivative is used as the starting material. First, the specific imidazole compound is placed in a suitable reaction vessel, and an appropriate amount of solvent is added. The solvent needs to be able to dissolve the raw material well and not interfere with the subsequent reaction, such as some polar organic solvents. Then, slowly add an amination reagent, which should have the appropriate activity and can effectively introduce amino groups. During the reaction process, it is necessary to strictly control the temperature and reaction time. Too high or too low temperature, too short or too long time may affect the yield and purity of the product. Usually, the reaction is carried out under moderate heating conditions to enhance the activity of the molecule and promote the smooth occurrence of the amination reaction.
    Second, in the reaction system, a specific catalyst may be added. This catalyst can significantly speed up the reaction rate and reduce the activation energy required for the reaction. The amount of catalyst also needs to be precisely controlled. If it is too small, the catalytic effect will be poor, and if it is too much, impurities may be introduced, which will affect the quality of the product. After the amination reaction is completed, the separation and purification steps are carried out. Commonly used separation methods include filtration, extraction, etc., to remove unreacted raw materials, catalysts and by-products. When purifying, or using the method of recrystallization, select the appropriate solvent, so that the solubility of the product changes significantly with temperature. After multiple crystallization, high-purity 4-amino-5-imidazole formamide can be obtained. Finally, under specific conditions, it is combined with water to form a monohydrate, such as controlling the humidity and temperature of the environment to promote the water molecules to combine with the compound in an appropriate ratio, resulting in 4-amino-5-imidazole formamide monohydrate.
    What are the precautions for storing and transporting 4-Amino-5-imidazolecarboxamide monohydrate?
    4-Amino-5-imidazole formamide monohydrate is an important chemical substance. During storage and transportation, many matters need to be paid attention to.
    When storing, the first dry environment. Because of its hygroscopicity, if the environment is humid, it is easy to cause it to absorb moisture, affect quality, or cause chemical reactions and cause it to deteriorate. Therefore, it should be stored in a dry and well-ventilated place, away from water sources and moisture.
    Temperature is also a key factor. It should be stored in a cool environment to avoid high temperature. High temperature may cause it to decompose and evaporate, reducing its purity and activity. Generally speaking, the suitable temperature is between 2-8 ° C, and this temperature range can maintain its stability.
    Furthermore, it is necessary to isolate the air. The substance may react with oxygen and other components in the air, which affects its chemical properties. Therefore, it should be sealed and stored in a sealed container to reduce contact with the air.
    During transportation, the packaging must be stable. Select suitable packaging materials to ensure that it is not damaged by vibration and collision during transportation. At the same time, follow the relevant transportation regulations, make a mark, clearly indicate its characteristics and precautions, so that the transporter can handle it properly.
    In addition, it is also necessary to pay attention to avoid mixing with other chemical substances. Due to its special chemical properties, or reaction with certain substances, it can cause danger. Therefore, it should be transported separately to ensure transportation safety. Only in this way can the quality and stability of 4-amino-5-imidazole formamide monohydrate be maintained to the maximum extent during storage and transportation.
    What is the market price range for 4-Amino-5-imidazolecarboxamide monohydrate?
    The market price range of 4-amino-5-imidazole formamide monohydrate is difficult to say exactly. Its price often varies due to many factors, such as quality, purchase quantity, supply and demand situation, market conditions, and even differences in merchants.
    In terms of quality and high purity, the price must be higher than that of ordinary products due to the difficulty of preparation and the complexity of the process. The price may increase significantly for each point of purity.
    Purchase volume is also the key. Bulk purchases, due to economies of scale, merchants may give discounts, and the unit price tends to decrease; sporadic small purchases, the unit price is high.
    The trend of supply and demand affects the price even more. When the demand is strong and the supply is in short supply, the price will skyrocket; if the supply exceeds the demand, the price will decline.
    The rise and fall of the market situation should not be underestimated. The industry is booming and the market is active, and the price may be strong; the industry is sluggish, and the price is also suppressed.
    Different merchants have different pricing due to different cost accounting and business strategies. Well-known big merchants, due to the excellent brand and after-sales, the price may be high; small merchants compete for the market, or have low prices.
    Overall, in the chemical raw material market, the unit price of this product may range from a few yuan per gram to tens of yuan. Small amounts of laboratory use, the price may be high, or up to tens of yuan per gram; a large number of industrial purchases, depending on the quality and quantity of the product, may cost tens of thousands of yuan per ton, but this is only a rough estimate. The truth must be carefully inspected by the market and consulted by the merchants.