2 Amino 1h Imidazole 4 5 Dicarbonitrile
quinoline thiophene imidazole thiazole

2-AMINO-1H-IMIDAZOLE-4,5-DICARBONITRILE

    Specifications

    HS Code

    286841

    Chemical Formula C5H3N5
    Molar Mass 131.11 g/mol
    Appearance Solid
    Melting Point N/A
    Boiling Point N/A
    Solubility In Water Insoluble
    Solubility In Organic Solvents Soluble in some organic solvents
    Density N/A
    Pka N/A
    Logp N/A
    Vapor Pressure N/A

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    General Information
    Where to Buy 2-AMINO-1H-IMIDAZOLE-4,5-DICARBONITRILE in China?
    As a trusted 2-AMINO-1H-IMIDAZOLE-4,5-DICARBONITRILE manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading 2-AMINO-1H-IMIDAZOLE-4,5-DICARBONITRILE supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    2-AMINO-1H-IMIDAZOLE-4, What are the chemical properties of 5-DICARBONITRILE?
    2-Amino-1H-imidazole-4,5-dichloronitrile, this is an organic compound with specific chemical properties. Its appearance is often white to light yellow crystalline powder, which is quite stable at room temperature and pressure.
    When it comes to solubility, it can be soluble in common organic solvents such as ethanol and dichloromethane, but its solubility in water is relatively limited. This property is related to its application in different reaction systems and separation and purification steps.
    From the perspective of chemical activity, its molecules are rich in amino and cyano groups, and its chemical activity is quite high. Amino groups can participate in many nucleophilic substitution reactions, such as reacting with acyl halides and acid anhydrides to form amides. The cyanyl group can be converted into a carboxyl group by hydrolysis reaction, or under specific conditions, it can undergo addition reaction with nucleophiles to derive nitrogen-containing heterocyclic compounds with diverse structures.
    Furthermore, 2-amino-1H-imidazole-4,5-dinitrile has a certain alkalinity, which is derived from the existence of amino groups and can neutralize with acids to generate corresponding salts. This alkaline property is of great value in regulating the pH of the reaction system and in the separation and purification of compounds.
    When heated or in contact with specific chemical substances, the compound may decompose and release toxic hydrogen cyanide gas and other products. Therefore, in the process of storage and use, it is necessary to follow strict safety procedures, operate in a well-ventilated place, and be careful to prevent danger. In short, the chemical properties of 2-amino-1H-imidazole-4,5-dinitrile are rich and complex, and they are widely used in organic synthesis and other fields. However, their characteristics need to be fully considered and controlled when using them.
    2-AMINO-1H-IMIDAZOLE-4, what are the synthesis methods of 5-DICARBONITRILE
    The synthesis methods of 2-amino-1H-imidazole-4,5-dinitrile have been known for a long time, and there are many methods, each with its own advantages.
    First, nitrogen-containing heterocyclic compounds are used as starting materials. Select a suitable nitrogen-containing heterocyclic ring, and gradually construct the structure of the target molecule after specific reaction conditions, such as in a suitable solvent, accompanied by a specific catalyst, substitution, condensation and other reaction steps. This process requires fine regulation of reaction temperature, time and the ratio of reactants to achieve higher yield and purity.
    Second, nitriles are also used as the basis for synthesis. Nitriles are cleverly combined, using their active chemical properties, through specific reaction pathways, such as nucleophilic addition, cyclization, etc., to carefully construct imidazole rings, and introduce amino and cyano groups at specific positions. In this pathway, the control and processing of reaction intermediates is very critical, which is related to the quality and yield of the final product.
    Third, there is still a way to rely on organometallic reagents. Organometallic reagents can help achieve precise chemical bond formation due to their unique reactivity. When synthesizing 2-amino-1H-imidazole-4,5-disonitrile, organometallic reagents can guide the reaction in the desired direction and efficiently build the skeleton structure of the target molecule. However, when using organometallic reagents, it is necessary to pay attention to the strict requirements of the reaction environment, such as no water, no oxygen and other conditions, to ensure the smooth progress of the reaction.
    All these synthesis methods require careful planning and careful operation by the experimenter, weighing the advantages and disadvantages of each method, in order to choose the best synthesis path according to actual needs, in order to obtain satisfactory results.
    2-AMINO-1H-IMIDAZOLE-4, what is the main use of 5-dicarbonitrile
    2-Amino-1H-imidazole-4,5-dinitrile, which has a wide range of uses. In the field of medicinal chemistry, it is often a key intermediate for the synthesis of a variety of drugs. Many biologically active heterocyclic compounds rely on it as the starting material for synthesis. After a series of chemical reactions, molecular structures with specific pharmacological activities are constructed to develop new therapeutic drugs, or to optimize the structure of existing drugs to improve efficacy and reduce side effects.
    In the field of materials science, it has also emerged. It can participate in the preparation of materials with special properties, such as some functional polymers. Because its structure contains specific functional groups, it can polymerize with other monomers, giving the material unique electrical, optical or mechanical properties, which are used in electronic devices and optical materials.
    Furthermore, in the field of organic synthetic chemistry, it is an important synthetic building block. Chemists ingeniously design reaction paths, use their activity check points, introduce different substituents, build complex organic molecular structures, expand the types and functions of organic compounds, and provide a variety of options and possibilities for the development of organic synthetic chemistry.
    2-AMINO-1H-IMIDAZOLE-4, 5-DICARBONITRILE What are the precautions during storage
    2-Amino-1H-imidazole-4,5-dinitrile is a chemical substance, and there are many things to pay attention to during storage.
    First, pay attention to environmental conditions. This substance should be stored in a dry place, and it may deteriorate due to moisture. If the environment is humid, water vapor may react with the substance and change its chemical properties. Therefore, it should be placed in a dry and well-ventilated place, and the humidity should be controlled within a specific range.
    Second, temperature is also critical. Avoid high temperature and extreme cold. High temperature may enhance the reactivity of the substance and cause adverse changes such as decomposition; extreme cold may cause changes in its physical state and affect its quality. Generally speaking, it is necessary to store it in a suitable temperature range according to the product instructions.
    Third, pay attention to isolation from other substances. This substance has specific chemical properties or reacts with certain substances. For example, it should not be stored with strong oxidizing agents, strong acids, strong alkalis, etc., to avoid dangerous chemical reactions, such as explosion, combustion, etc.
    Fourth, storage containers should also be particular. It is advisable to use corrosion-resistant and well-sealed containers. For example, glass or specific plastic containers can not only prevent material leakage, but also prevent the container from reacting with the substance to ensure its chemical stability.
    Finally, the storage place should be clearly marked. Label the material name, properties, storage conditions and other key information for access and management, and enable staff to quickly know the relevant precautions and avoid misoperation. In this way, it can ensure that 2-amino-1H-imidazole-4,5-dinitrile remains stable during storage without quality problems and safety hazards.
    2-AMINO-1H-IMIDAZOLE-4, what is the market price range of 5-DICARBONITRILE?
    There is a question today, 2 - AMINO - 1H - IMIDAZOLE - 4,5 - What is the market price range of DICARBONITRILE. This is a chemical substance, and its market price often changes due to various reasons.
    Looking at the market in the past, the price of this substance may be related to the difficulty of production and the wide range of needs. If it is difficult to make, the materials used are precious, and there are many needs in the world, the price will be high; if it is easy to make, the materials used are common, and the needs are few, the price will be low.
    If you want to know the current market price range, you still need to carefully investigate the current market of chemical trading, consult the merchants specializing in this industry, or check the recent price of chemical materials. Today, I can't directly state its specific price range. Due to the ever-changing market conditions, it is difficult to know for sure if it is not a detailed investigation on the spot. Those who need it should go to the market in person and inquire from many parties to obtain an accurate price.