Isoquinoline 5 Sulfonate
quinoline thiophene imidazole thiazole

isoquinoline-5-sulfonate

Taiy Chemical

    Specifications

    HS Code

    112972

    Chemical Formula C9H7NO3S
    Molecular Weight 209.22
    Appearance Solid (usually powder)
    Melting Point Data may vary by purity
    Solubility In Water Low solubility, sparingly soluble
    Solubility In Organic Solvents Soluble in some polar organic solvents like DMSO
    Pka Value Related to the sulfonic acid group, around 1 - 2
    Color Often white to off - white
    Odor Odorless or very faint odor
    Stability Stable under normal conditions, but may react with strong oxidizing agents

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    General Information
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    Frequently Asked Questions

    As a leading isoquinoline-5-sulfonate 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 isoquinoline-5-sulfonate?
    The chemical properties of isoquinoline-5-sulfonate are unique and interesting. This compound contains the aromatic heterocyclic structure of isoquinoline and has both sulfonate groups, which synergistically endow it with various properties.
    In terms of physical properties, it is often crystalline due to the orderly arrangement of intermolecular forces. In terms of solubility, in polar solvents, such as water, the sulfonate group can form hydrogen bonds with water molecules, so it has certain solubility; in non-polar solvents, the solubility is poor.
    In terms of chemical activity, the π electron cloud density distribution of the isoquinoline ring is special, which makes the electrophilic substitution reaction prone to occur at specific positions on the ring. Under appropriate conditions, various substituents can be introduced into the ring to derive many derivatives with different functions, which is an important strategy for organic synthesis. Sulfonate groups are acidic and can neutralize with bases to form corresponding salts. And this group can also participate in the ion exchange process and play a role in some separation and catalytic systems. Due to its unique structure and properties, isoquinoline-5-sulfonate has broad application prospects in pharmaceutical chemistry, materials science and other fields, or can be used as drug lead compounds or as key structural units for the construction of new functional materials.
    In what areas is isoquinoline-5-sulfonate applied?
    Isoquinoline-5-sulfonate is useful in many fields. In the field of medicine, it is a key raw material for drug synthesis. The unique chemical structure of isoquinoline-5-sulfonate can participate in the construction of a variety of drug molecules and help it obtain specific pharmacological activities. For example, some drugs with antibacterial and anti-inflammatory effects need to be synthesized with this as a starting material. Through a series of chemical reactions, drug molecules can be precisely shaped so that they can effectively act on lesions in the human body and heal diseases.
    In the field of materials science, isoquinoline-5-sulfonate also plays an important role. In the preparation of some special functional materials, it can act as an additive to improve material properties. For example, adding an appropriate amount of isoquinoline-5-sulfonate to a specific polymer material can significantly improve the stability and durability of the material, making the material more suitable for complex environments, such as high temperature, high humidity and other extreme conditions.
    Furthermore, in the field of organic synthesis chemistry, isoquinoline-5-sulfonate is often used as a reaction intermediate. Due to its particularity of structure, it can participate in a variety of organic reactions, such as nucleophilic substitution, redox and other reactions, providing an effective way for the synthesis of various complex organic compounds. Chemists can use this to construct organic molecules with novel structures and unique functions, expand the boundaries of organic synthesis, and lay the foundation for new material research and development, drug creation, etc. In short, isoquinoline-5-sulfonate has shown important application value in many fields such as medicine, materials and organic synthesis, and promotes the continuous development and progress of related fields.
    What is the preparation method of isoquinoline-5-sulfonate?
    The method of preparing isoquinoline-5-sulfonate is to start with isoquinoline. First take an appropriate amount of isoquinoline and place it in a clean reaction vessel. Under suitable reaction conditions, add a sulfonating agent, such as concentrated sulfuric acid or fuming sulfuric acid. This process requires strict observation of temperature changes, usually controlled in a specific temperature range to prevent side reactions. Slowly add the sulfonating agent, and constantly stir to fully blend with the isoquinoline to promote the reaction to proceed evenly. When reacting, pay close attention to the phenomenon of color change and temperature fluctuation of the system. After the reaction is completed, the reaction mixture is neutralized with a suitable alkali solution, such as sodium hydroxide solution, and adjusted to an appropriate pH value to convert the isoquinoline-5-sulfonic acid into the corresponding sulfonate. After that, through the separation and purification steps, the pure isoquinoline-5-sulfonate product can be obtained by filtration, crystallization, recrystallization and other methods. In this process, each step needs to be fine and strictly observed to obtain high-quality products.
    What is the market price of isoquinoline-5-sulfonate?
    I look at you and ask "what is the market price of isoquinoline-5-sulfonate", but it is difficult to answer this question. The price of isoquinoline-5-sulfonate is influenced by various factors.
    First, the source of production is related to the price. If the origin is rich in raw materials and the preparation process is well-developed, the cost may decrease, and the price will stabilize and decrease. On the contrary, if raw materials are scarce and the process is complicated, the price will be high.
    Second, the market supply and demand situation is important. If many companies compete to buy this product for use in pharmaceuticals, chemicals and other fields, the demand is strong, but the supply is limited, and the price will rise. If the market is oversupplied, merchants will sell, and the price may drop.
    Third, the quality grade is also the price. High purity, high quality isoquinoline - 5 - sulfonate, suitable for high-end use, the price is naturally higher than ordinary ones.
    Fourth, the impact of the current situation is difficult to ignore. Changes in trade policies, tax increases and decreases, and slow transportation can all cause price fluctuations.
    If you want to know the price now, you can explore the chemical product trading platform, consult suppliers, or refer to professional market survey reports to get a more real price.
    How safe and toxic are isoquinoline-5-sulfonate?
    The book "Tiangong Kaiwu" focuses on the matter of real science, but I have never heard of the name "isoquinoline-5-sulfonate", which is the word of Xiyi chemistry. If you use ancient methods to determine its safety and toxicity, it is difficult to do so.
    In today's world, there are many chemical things. If you want to know the safety and toxicity of "isoquinoline-5-sulfonate", you should test it with today's scientific methods. If you cover today's chemical analysis techniques, you can know the properties of substances in detail. Use instruments to measure its structure and composition, and use experiments to observe its impact on organisms and the environment.
    In terms of safety, it is related to human contact, inhalation, ingestion, etc. If this substance is highly irritating, it can come into contact with human skin and mucous membranes, and it may cause damage. If it can evaporate in the air, it can be inhaled by humans, or damage the lungs and organs. As for toxicity, it can cause cell lesions, organ damage, or accumulate in the environment, harming living beings.
    However, I say it in the ancient saying, only to show the truth. To obtain confirmation, it must be based on today's scientific experiments and research, and its nature must be carefully examined to clarify its safety and toxicity.