8 Amino 6 Methoxyquinoline
quinoline thiophene imidazole thiazole

8-amino-6-methoxyquinoline

Taiy Chemical

    Specifications

    HS Code

    983067

    Molecular Formula C10H10N2O
    Molar Mass 174.2 g/mol
    Appearance Solid (presumed, typical for such organic compounds)
    Solubility In Water Limited solubility (quinoline derivatives often have low water solubility)
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone (typical for aromatic nitrogen - containing compounds)
    Color Colorless to pale yellow (common color range for quinoline derivatives)

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    General Information
    Where to Buy 8-amino-6-methoxyquinoline in China?
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    Frequently Asked Questions

    As a leading 8-amino-6-methoxyquinoline 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 main uses of 8-amino-6-methoxyquinoline?
    8-Amino-6-methoxyquinoline is an important substance in the field of organic compounds, with a wide range of uses and important applications in many fields.
    First, in the field of medicinal chemistry, this compound is often used as a key intermediate. Because the quinoline structure plays an important role in many drug molecules, the specific functional group of 8-amino-6-methoxyquinoline can participate in various chemical reactions. After modification and derivatization, compounds with specific pharmacological activities can be obtained. For example, it can be used to develop antimicrobial drugs that can enhance the inhibitory effect on specific bacteria by adjusting their structure; or it can play a role in the development of anti-tumor drugs by interacting with specific targets within tumor cells to achieve the effect of inhibiting tumor cell growth and proliferation.
    Second, in the field of materials science, 8-amino-6-methoxyquinoline can be used to prepare functional materials due to its unique molecular structure and electronic properties. For example, as a component of organic light-emitting materials, in organic electroluminescent devices (OLEDs), with its luminescent properties, it can contribute to the realization of efficient and colorful luminescent effects; or as a ligand, it can form complexes with metal ions to construct materials with special optical, electrical or magnetic properties, which are used in sensors, catalyst carriers and many other aspects.
    Third, in the field of analytical chemistry, this compound can be used as an analytical reagent. Due to its specific selectivity and sensitivity to certain metal ions, it can react with them specifically to achieve qualitative and quantitative analysis of metal ions. For example, in environmental monitoring, it can be used to detect the content of specific metal ions in water samples or soil samples to help evaluate environmental quality. In conclusion, 8-amino-6-methoxyquinoline has shown important value in many fields such as drug research and development, material preparation, and analytical testing due to its unique chemical structure. With the continuous development of science and technology, its potential uses are expected to be further expanded and deepened.
    What are the physical properties of 8-amino-6-methoxyquinoline?
    8-Amino-6-methoxyquinoline is a kind of organic compound. Its physical properties are particularly important, and it is related to its properties in various chemical processes and practical applications.
    First of all, its appearance is often solid, and the color may be light yellow to light brown. This color sign can be observed visually, and it is quite useful in the preliminary identification of this compound. Its texture is delicate, and it feels slightly powdery to the touch, which is an intuitive physical appearance.
    As for the melting point, it is within a certain range, probably due to factors such as purity. The nature of this melting point is of great significance in identifying its purity and controlling the relevant reaction temperature. If the compound contains impurities, the melting point may decrease and the melting range becomes wider.
    Solubility is also a key property. In organic solvents, such as ethanol, dichloromethane, etc., it has a certain solubility. This property allows it to be dissolved, separated, and purified by these solvents. In water, the solubility is relatively small, and the hydrophobic quinoline ring accounts for a large proportion of its molecular structure, resulting in poor hydrophilicity.
    In addition, its density also has a specific value. Although it is not easily perceptible in daily life, it is indispensable for accurate stoichiometry and phase equilibrium studies. The value of density is related to the relationship between the volume and mass of the mixed system, and is the basic data for the design of many chemical processes.
    In addition, the volatility of 8-amino-6-methoxyquinoline is very small, and it is difficult to evaporate significantly at room temperature and pressure. This makes it highly stable during storage and use, and does not require special sealing and storage conditions like some volatile substances.
    In summary, the physical properties, appearance, melting point, solubility, density and volatility of this compound are interrelated, and are all key factors to consider in chemical synthesis, analysis and testing, and related industrial applications. It is of great significance to effectively utilize and conduct in-depth research on it.
    What is the chemical synthesis method of 8-amino-6-methoxyquinoline?
    8-Amino-6-methoxyquinoline is also an organic compound. The method of chemical synthesis is quite complicated, and it needs to be carried out with delicate steps and appropriate reagents.
    First take appropriate starting materials, such as compounds containing quinoline structure, or start from simple aromatics, and construct quinoline parent nuclei through multi-step reactions. Usually nucleophilic substitution, cyclization reaction, etc. are the basic steps.
    If starting from aromatics, the Friedländer reaction can be carried out first, using anthranilic formaldehyde and β-ketoate as raw materials, and in the presence of appropriate catalysts, the reaction is heated to form a quinoline ring. This reaction requires control of temperature, catalyst dosage and reaction time to make the reaction proceed in the desired direction.
    After obtaining a quinoline compound, methoxylation and amination are carried out. Methoxylation is often reacted with halogenated quinoline and nucleophiles such as sodium methoxide to introduce methoxy groups. This step requires attention to the choice of reaction solvent to ensure the solubility and reactivity of the reagent.
    Then, proceed to the amination step. Suitable amination reagents, such as ammonia derivatives, can be used to replace the amino group at the target position under appropriate reaction conditions. In this process, the reaction conditions need to be carefully adjusted to avoid side reactions, such as excessive substitution or substitution of other positions.
    After each step of the reaction is completed, it needs to be separated and purified to obtain high-purity 8-amino-6-methoxyquinoline. Commonly used purification methods include recrystallization, column chromatography, etc. According to the properties of the product and the characteristics of impurities, choose the appropriate one. In this way, through multi-step efforts, 8-amino-6-methoxyquinoline can be successfully synthesized.
    What is the price range of 8-amino-6-methoxyquinoline in the market?
    8-Amino-6-methoxyquinoline, an organic compound, is used in many fields such as chemical industry and medicine. However, it is in the market price range, and there is no fixed number. Due to multiple factors intertwined, its price is influenced.
    First, purity is the key. For high purity, the preparation process is complicated, the cost is also high, and the price is naturally high. If the purity is above 98%, the price per gram may be hundreds of yuan. For low purity, the preparation is slightly easier, the cost is reduced and the price is also cheap, or tens of yuan per gram.
    Second, the purchase volume has a great impact. Large-scale purchases, due to economies of scale, suppliers may give discounts, and the unit price tends to be lower. < Br >
    Third, the market supply and demand situation also affects the price. If the demand is strong but the supply is limited, the price will rise; if the supply is sufficient but the demand is small, the price may decline.
    Fourth, the price varies between manufacturers and brands. Well-known large factories, strict quality control, high R & D investment, high product prices; small factories or low prices.
    According to the "Tiangong Kaiwu", although there was no such compound at that time, the analysis of the causes of the price of various products is similar. All factors such as materials, processes, supply and demand cause price changes. Therefore, if you want to know the exact price of 8-amino-6-methoxyquinoline, you should consult the supplier and consider the above factors comprehensively.
    8-amino-6-methoxyquinoline what are the precautions during use
    8-Amino-6-methoxyquinoline is one of the organic compounds. When using, there are a number of precautions to be paid attention to.
    The first to bear the brunt is a matter of safety protection. This compound may have certain toxicity and irritation, so be sure to wear appropriate protective equipment when operating. Such as protective gloves to prevent it from coming into contact with the skin, causing skin irritation or even damage; anti-goggles to protect the eyes from it; gas masks are also indispensable. If there is a volatile situation during operation, it can avoid inhaling its vapor to prevent damage to the respiratory tract and other parts of the body.
    Furthermore, its chemical properties also need to be carefully considered. 8-Amino-6-methoxyquinoline contains amino and methoxy functional groups and has specific reactivity. When storing, it should be avoided in common with strong oxidants, strong acids, strong bases and other substances to prevent violent chemical reactions from occurring and causing danger. And it needs to be stored in a cool, dry and well-ventilated place to prevent its deterioration or cause safety problems.
    In addition, when using this compound for experiments or other work, the design of the experimental scheme and the specification of the operation process are of paramount importance. It is necessary to clarify its physical and chemical properties in advance, such as melting point, boiling point, solubility, etc., in order to choose appropriate reaction conditions and separation and purification methods. During the operation, the established operating procedures should be strictly followed, and factors such as reaction temperature, time, and proportion of reactants should be precisely controlled, so as to ensure the accuracy and safety of the experiment and to obtain the expected experimental results. In short, when using 8-amino-6-methoxyquinoline, care should be taken in terms of safety, storage, and operation, and no slack should be taken.