2 Butyl 5 Chloro 1h Imidazole 4 Carbaldehyde
quinoline thiophene imidazole thiazole

2-Butyl-5-Chloro-1H-Imidazole-4-Carbaldehyde

    Specifications

    HS Code

    325854

    Chemical Formula C8H11ClN2O
    Molecular Weight 186.64
    Appearance Solid (Typical description, may vary)
    Melting Point N/A (Exact value may need experimental determination)
    Boiling Point N/A (Exact value may need experimental determination)
    Solubility In Water Low (Typical for such organic compounds)
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, dichloromethane
    Density N/A (Exact value may need experimental determination)
    Flash Point N/A (Exact value may need experimental determination)
    Pka N/A (Relevant acid - base properties may need experimental determination)
    Odor Characteristic organic odor (Typical for imidazole - based compounds)

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    General Information
    Where to Buy 2-Butyl-5-Chloro-1H-Imidazole-4-Carbaldehyde in China?
    As a trusted 2-Butyl-5-Chloro-1H-Imidazole-4-Carbaldehyde 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-Butyl-5-Chloro-1H-Imidazole-4-Carbaldehyde 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 2-butyl-5-chloro-1H-imidazole-4-formaldehyde?
    2-%E4%B8%81%E5%9F%BA-5-%E6%B0%AF-1H-%E5%92%AA%E5%94%91-4-%E7%94%B2%E9%86%9B, it is also a chemical compound. In its molecules, carbon atoms are the same as atoms, and have specific chemical properties.
    One of its chemical properties is flammability. This chemical compound is rich in carbon elements. In case of open flame or high temperature, it is easy to generate strong oxidation and reaction. It puts a lot of energy and turns it into carbon dioxide and water. Therefore, it is often used as fuel for life and work.
    Furthermore, it has the property of substitution and inverse. Due to the activity of atoms in the molecule, it can be replaced by other atoms or atoms under suitable conditions. For example, under the action of light or catalysis, prime atoms can replace the atoms in their molecules to form a new generation. This property is very important in the field of synthesis. It can be skillfully synthesized to synthesize a variety of compounds with special functions.
    In addition, its ability to generate cracking inverse. Under high-temperature, catalytic and other components, carbon and carbon in the molecule can be cracked to form small molecules. This inverse effect is remarkable in the petrochemical industry. It can produce high-molecular-weight low-molecular-weight and high-value products, such as gasoline, diesel, etc.
    , 2-%E4%B8%81%E5%9F%BA-5-%E6%B0%AF-1H-%E5%92%AA%E5%94%91-4-%E7%94%B2%E9%86%9B because of its versatility, it plays an important role in many aspects of engineering and life. It is an important phenomenon in chemical research and application.
    What is the main use of 2-butyl-5-chloro-1H-imidazole-4-formaldehyde?
    2-% heptyl-5-bromo-1H-indole-4-acetaldehyde has a wide range of uses. In the field of medicinal chemistry, this compound is often a key raw material for the creation of new drugs. Due to its special chemical structure, it can combine with specific biological targets in the human body and exhibit unique pharmacological activities. For example, in the development of drugs for neurological diseases, through its interaction with neurotransmitter receptors, specific drugs for depression, anxiety and other diseases may be developed.
    In the field of materials science, 2-% heptyl-5-bromo-1H-indole-4-acetaldehyde also has extraordinary performance. It can be used as an important monomer in the synthesis of functional organic materials. After polymerization or other chemical modifications, materials with special optical and electrical properties can be prepared. For example, it is used in the synthesis of organic Light Emitting Diode (OLED) materials to improve their luminous efficiency and stability, so that the display device presents more brilliant colors and higher image quality.
    In the field of organic synthesis chemistry, this compound is often used as a key intermediate. With its active functional groups, more complex organic molecular structures can be constructed through a series of chemical reactions, such as nucleophilic substitution, redox, etc. Chemists can use 2% heptyl-5-bromo-1H-indole-4-acetaldehyde as a starting material to synthesize natural product analogs with biological activity or special functions by ingeniously designing reaction routes, providing a rich material basis for new drug development and material innovation.
    What are the synthesis methods of 2-butyl-5-chloro-1H-imidazole-4-formaldehyde?
    To prepare 2-cyano-5-bromo-1H-indole-4-acetaldehyde, there are three methods.
    First, starting with 2-cyano-5-bromo-1H-indole, formyl is introduced by formylation, and then hydroxymethyl is obtained by reduction, and then oxidized to obtain the target 2-cyano-5-bromo-1H-indole-4-acetaldehyde. The method of formylation can be used as a Vilsmeier-Haack reaction, using phosphorus oxychloride and N, N-dimethylformamide as a substrate, introducing formyl groups, and then reducing formyl groups to hydroxymethyl groups with suitable reducing agents, such as sodium borohydride, etc., followed by oxidation of hydroxymethyl groups to aldehyde groups with mild oxidizing agents, such as manganese dioxide, etc.
    Second, using 5-bromo-1H-indole as the starting material and introducing a cyano group before the 4-indole position, the nucleophilic substitution reaction can be used to react with suitable cyanide reagents, such as potassium cyanide, under appropriate conditions. After introducing the cyano group at the second position, it can be achieved by multi-step conversion, and finally brominated at the fifth position to obtain 2-cyano-5-bromo-1H-indole, and then through the formylation, reduction and oxidation steps as described above to obtain the target product.
    Third, design a suitable cyclization reaction. The indole ring was constructed by intra-molecular cyclization reaction with substrates containing bromine, cyano group and potential cyclization to form indole ring. After one or more steps of conversion, 2-cyano-5-bromo-1H-indole was obtained. The subsequent steps of formylation, reduction and oxidation were followed to obtain 2-cyano-5-bromo-1H-indole-4-acetaldehyde. This cyclization reaction requires fine design of the substrate structure and reaction conditions, so that the cyclization check point and the introduction of substituents are accurate.
    All methods have advantages and disadvantages, and it is necessary to choose the best one according to the actual situation, such as the availability of raw materials, the difficulty of reaction, and the consideration of cost.
    What is the market price of 2-butyl-5-chloro-1H-imidazole-4-formaldehyde?
    Today there is 2-amino-5-bromo-1H-indole-4-acetic acid. To know the price of its market. This is a fine chemical, and its price often varies depending on the quality, quantity, and supply and demand of the market.
    If the quality is good and the quantity is huge, the price may be slightly flat. However, the preparation method requires exquisite craftsmanship and precious raw materials. If you want to get a pure product, you must go through multiple steps of reaction, and the yield and purity of each step are related to the final cost.
    In the market, or because of its excellent use, it is mostly used in pharmaceutical research and development, biological experiments and other fields. The demand is not very small, so the price is not low. Roughly speaking, the price per gram may be between tens of gold and hundreds of gold. If you want higher purity, such as pharmaceutical grade, the price may be higher, and the price per gram or to thousands of gold is also unknown.
    This price is just a rough estimate, and the market conditions are changing rapidly. If you want to get an accurate price, you must consult the supplier in detail to compare its price and quality to know the real price in the market.
    What are the precautions for 2-butyl-5-chloro-1H-imidazole-4-formaldehyde during storage and transportation?
    If acetonitrile is used, it is necessary to pay careful attention to all kinds of things.
    First of all, if it is stored, it must be good and dry. Acetonitrile activity, if it is high or damp, it may cause accidents. And it is appropriate to store oxidized, acid, oil and other substances separately, because it is easy to initiate and react, causing dangerous feelings. In case of mixed storage, or ignition or explosion, it must not be ignored.
    Second, the packaging should be properly packed. The container used must be able to withstand the rot of acetonitrile, and has good tightness to prevent leakage.
    In addition, it is recommended that people who are in trouble on the way follow the traffic rules and move slowly to avoid severe bumps and collisions, so as to avoid damage to the package and cause acetonitrile to be damaged.
    In addition, if there is no fire or damage, it is forbidden to burn everywhere. Acetonitrile is flammable, and explodes in case of open flames and high-temperature flammability. Therefore, there should be no fire source around, and it is necessary to ban fire in the next day, and add a few people to inspect it to eliminate all possible ignition factors.
    In addition, people who are in trouble with acetonitrile must be well-versed in the properties, hazards and emergency management of acetonitrile. Daily operation, follow the process, and take precautions such as gas masks and gloves to ensure their own safety.
    In this case, acetonitrile is not stored in the warehouse, and all the factories are safe. If there is a slight difference, there will be a big disaster. Follow the corresponding rules and regulations, and be careful before you can protect your safety.