4 5 Amino 5 4 Imidazolecarboxamide
quinoline thiophene imidazole thiazole

4(5)-AMINO-5(4)-IMIDAZOLECARBOXAMIDE

    Specifications

    HS Code

    396326

    Chemical Formula C4H6N4O
    Molecular Weight 126.12 g/mol
    Appearance Solid
    Solubility In Water Moderate
    Melting Point 218 - 220 °C
    Density N/A
    Pka Value N/A
    Odor Odorless

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    General Information
    Where to Buy 4(5)-AMINO-5(4)-IMIDAZOLECARBOXAMIDE in China?
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    Frequently Asked Questions

    As a leading 4(5)-AMINO-5(4)-IMIDAZOLECARBOXAMIDE 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 the 4 (5) -AMINO-5 (4) -IMIDAZOLECARBOXAMIDE?
    4- (285) -Amino-5- (4) -imidazole formamide, an organic compound. Its chemical structure is quite unique, composed of key parts such as imidazole ring, amino group and formamide group.
    Look at its imidazole ring, which is the core structure of the compound. The imidazole ring is a five-membered heterocycle containing two nitrogen atoms, which is aromatic and plays a key role in many bioactive substances and chemical reactions.
    The amino group (-NH ²) is attached to a specific position of the imidazole ring, giving the compound basic properties. Amino groups can participate in many chemical reactions, such as neutralization with acids, and can also participate in reactions as nucleophiles in organic synthesis, which greatly affects the chemical properties and reactivity of compounds.
    And formamide groups (-CONH ²) are also connected to another position of the imidazole ring. Formamide groups have certain stability and polarity, which affect the physical properties of compounds, such as solubility, melting point, boiling point, etc. At the same time, they may participate in specific biochemical reactions in organisms, or interact with biological targets in drug design.
    The chemical structure of this compound works synergistically, endowing it with unique chemical and physical properties, which may have potential application value in the fields of organic synthesis, medicinal chemistry, and biochemistry.
    What are the main uses of the 4 (5) -AMINO-5 (4) -IMIDAZOLECARBOXAMIDE?
    4- (285%) -amino-5- (4%) -imidazolecarbonamide, this is the name of the chemical substance. Its main uses are quite extensive, in the field of medicine, it can be used as an intermediate for drug synthesis. In the process of many new drug development, this substance is often relied on to build key molecular structures to help synthesize drugs with specific curative effects, or for anti-cancer drugs, anti-infective drugs, etc., by participating in the construction of drug molecules, giving drugs unique pharmacological activity.
    In the field of biochemical research, its role should not be underestimated. It can be used as a tool to explore specific biochemical reaction mechanisms in organisms. Due to its special structure, it can simulate some key molecules in organisms, helping researchers to understand the mysteries of relevant metabolic pathways, signal transduction pathways, etc., thereby enhancing the understanding of life processes.
    In the field of materials science, or can participate in the preparation of functional materials. With its special chemical properties, through specific chemical reactions, it is integrated into the material structure, endowing the material with unique properties such as adsorption and stability. It is used in the preparation of separation membrane materials, catalyst carriers, etc., to broaden the application scenarios of materials.
    This substance has important uses in different fields, like the key to open different scientific doors, and promotes the continuous progress of research and application in various fields.
    What are the physical properties of the 4 (5) -AMINO-5 (4) -IMIDAZOLECARBOXAMIDE?
    4- (285%) -amino-5- (4%) -imidazole formamide, this substance is relatively rare. Looking at its structure, it is based on imidazole ring, side chain linked amino group and formamide group.
    In terms of physical properties, under normal temperature and pressure, or as a solid powder, because organic nitrogen-containing heterocyclic compounds are mostly in this state. Color or near white, most of these compounds with simple structures and few conjugated systems show this color.
    In terms of melting point, due to the existence of hydrogen bonds and van der Waals forces between molecules, amino groups and formamide groups can form hydrogen bonds and strengthen intermolecular interactions, so the melting point should not be low, or in the range of 150-250 ° C. < Br >
    In terms of solubility, it contains polar groups. Theoretically, it has a certain solubility in polar solvents such as water. However, due to the large size of the molecule and the non-polar structure, the solubility may be limited; in alcohol solvents, the solubility may be better than that of water due to similar miscibility and the formation of hydrogen bonds.
    In addition, its density may be slightly higher than that of water. Because the molecule contains nitrogen and oxygen atoms, the relative mass is relatively large, and the structure is compact. Odor or weak, because it is non-volatile and strong and has no special odor functional groups. The above are all based on the properties of common organic compounds, which are different in fact or due to specific structural differences.
    What are the synthesis methods of 4 (5) -AMINO-5 (4) -IMIDAZOLECARBOXAMIDE?
    The synthesis method of 4- (5) -amino-5- (4) -imidazole formamide has been known for a long time, and has been studied by many wise men, and there are many wonderful methods.
    First, it is obtained from a common starting material through a multi-step delicate reaction. The starting material undergoes a condensation reaction under specific reaction conditions, such as at a suitable temperature, pressure and catalyst. This condensation reaction requires precise control of the reaction parameters. If there is a slight difference in the pool, the product will be impure. Then, through the step of functional group transformation, through carefully selected reagents and reaction conditions, the existing functional groups will be skillfully transformed to construct the desired structure of the target molecule. This step requires familiarity with the characteristics and reactivity of various reagents in order to achieve the desired effect.
    Second, there are those who synthesize with innovative strategies. With the help of novel reaction paths, the cumbersome steps of traditional methods are avoided. For example, some special catalytic systems are used to promote the reaction in a more efficient and selective way. This special catalytic system is either a newly discovered metal complex or a unique organic catalyst. It can significantly reduce the activation energy of the reaction, allowing the originally difficult reaction to proceed smoothly, and the yield and purity of the product are good.
    Third, there are also those who start from the concept of green chemistry. Choose more environmentally friendly solvents and raw materials to optimize the reaction process and reduce the generation of waste. In the synthesis process, pay attention to the atomic economy, and strive to convert the atoms of the raw material into the target product as much as possible. In this way, it not only conforms to the current trend of environmental protection, but also reduces production costs, which can be said to kill two birds with one stone.
    All synthesis methods have their own advantages and disadvantages, and they need to be carefully selected according to actual needs, such as the purity requirements of the product, the consideration of production costs, and the feasibility of reaction conditions, etc., in order to achieve the purpose of synthesis.
    4 (5) -AMINO-5 (4) What is the price range of -IMIDAZOLECARBOXAMIDE in the market?
    4- (285%) -Amino-5- (4%) -imidazolecarbonamide is in the market price range, I have carefully observed it today. However, the market situation is complex, and the price varies with many factors, making it difficult to be sure.
    This substance may be used in chemical, pharmaceutical and other fields, and its price is often affected by the cost of raw materials, the difficulty of preparation, and market supply and demand. If the raw materials are abundant, the production method is simple, and the demand is ordinary, the price may be slightly lower; on the contrary, the raw materials are rare, the preparation is difficult, and the demand is strong, the price will be high.
    Although it is difficult to know the exact price range today, according to past market examples and similar products, if it is industrial grade, the price per kilogram may be between hundreds and thousands of yuan. If it is pharmaceutical grade, due to strict purity requirements, the price per gram may reach tens to hundreds of yuan. However, this is a rough estimate, and the actual price must be based on the current market conditions. Market conditions are changing rapidly. Only by inquiring about suppliers can you get the current accurate price.