What is the chemical structure of 5-Isoquinolinesulfonic Acid?
5-Isoquinoline sulfonic acid, this is a kind of organic compound. Looking at its name, it can be seen that its structure contains isoquinoline parent nucleus and sulfonic acid group.
Isoquinoline, an aromatic hydrocarbon with a heterocyclic nitrogen ring, its structure is formed by fusing a benzene ring with a pyridine ring. As for the sulfonic acid group, that is, the -SO 🥰 H group, it is strongly acidic and hydrophilic.
5-Isoquinoline sulfonic acid, the sulfonic acid group is connected to the 5th position of the isoquinoline parent nucleus. Its simple structure can be roughly expressed as: At the 5th position of isoquinoline, the group is covalently linked to the -SO 🥰 H group With this structure, it has both the aromatic properties of isoquinoline and the acidic properties of sulfonic acid groups.
Because of its structure, it can be used as a key intermediate in the field of organic synthesis. With its acidity and reactivity, it participates in a variety of organic reactions, such as with compounds containing active hydrogen, which can form specific bonds to prepare organic materials with special functions. And because of the existence of isoquinoline rings, it can be used to construct complex heterocyclic systems, in pharmaceutical chemistry, or in the creation of bioactive compounds. The chemical structure of 5-isoquinoline sulfonic acid is actually constructed by the isoquinoline parent nucleus and the sulfonic acid group at position 5. This unique structure endows it with diverse chemical properties and wide application potential.
What are the main uses of 5-Isoquinolinesulfonic Acid?
5-Isoquinoline sulfonic acid, which has a wide range of uses. In the field of chemical synthesis, it is often used as a key intermediate. Due to its unique structure, it can borrow various chemical reactions to derive many compounds with special properties and uses.
In the process of pharmaceutical research and development, it may have potential medicinal value. Its structural properties may allow it to interact with specific targets in organisms, and then be used to create new drugs to treat various diseases, such as inhibition or activation of certain disease-related enzymes or receptors.
In the field of materials science, it also has its uses. It can be used to participate in the preparation of materials and endow materials with specific properties, such as improving the solubility, stability or functionality of materials, to meet the special needs of material properties in different fields.
In scientific research and exploration, as an important chemical reagent for researchers to deeply explore chemical reaction mechanisms, compound properties, etc. Its unique chemical properties provide many possibilities for scientific research, helping researchers to open up new research directions and fields. In short, 5-isoquinoline sulfonic acid plays an indispensable role in many fields and is of great significance to promote the development of various fields.
What are the physical properties of 5-Isoquinolinesulfonic Acid?
5-Isoquinoline sulfonic acid is an organic compound. Its physical properties are quite unique, with specific properties and characteristics.
Looking at its appearance, under room temperature and pressure, it is often in a solid state, or a crystalline powder, fine and regular, with white to light yellow color, uniform and pure color. This appearance feature not only highlights the stability of its chemical structure, but also is an important basis for identifying the substance.
When it comes to solubility, 5-Isoquinoline sulfonic acid exhibits good solubility in water. Water is a common solvent, and many chemical reactions are carried out in aqueous solutions. This substance is soluble in water, indicating that it can participate in many aqueous chemical reactions or play a specific role in aqueous systems. However, its solubility in organic solvents varies. In polar organic solvents such as ethanol and acetone, the solubility is acceptable, while in non-polar organic solvents such as n-hexane and benzene, the solubility is poor. This difference in solubility is related to the polarity of the molecule, which has a great impact on its application in different chemical environments.
The melting point of 5-isoquinoline sulfonic acid is also a key physical property. Its melting point value is specific. When the temperature rises to the melting point, the substance changes from solid state to liquid state. This transition temperature is its inherent property and depends on the strength of intermolecular forces. Accurately knowing the melting point is of great significance for the purification, identification and control of related chemical reaction conditions.
Furthermore, its density cannot be ignored. The density of 5-isoquinolinesulfonic acid reflects the mass per unit volume of a substance. Compared with common organic compounds, the density of 5-isoquinolinesulfonic acid has its own characteristics. This property needs to be considered when it comes to the measurement, mixing and related process design of substances.
The physical properties of 5-isoquinolinesulfonic acid, such as appearance, solubility, melting point and density, are interrelated and influenced, laying the foundation for its application in chemical research, industrial production and many fields.
What is the synthesis method of 5-Isoquinolinesulfonic Acid?
The synthesis of 5-isoquinoline sulfonic acid is an important issue in chemical preparation. To obtain this compound, it is often done by number method.
First, isoquinoline is used as the starting material and can be prepared by sulfonation reaction. This reaction requires the reaction of isoquinoline and sulfonating reagents under appropriate conditions. Commonly used sulfonating reagents, such as concentrated sulfuric acid, fuming sulfuric acid, etc. Under suitable temperature and reaction time, the sulfonated acid group in the sulfonating reagent can replace the hydrogen atom at a specific position of the isoquinoline molecule to generate 5-isoquinoline sulfonic acid. However, this process needs to pay attention to the precise control of the reaction conditions. If the temperature is too high or the reaction time is too long, it may cause excessive sulfonation and form by-products, which will affect the purity and
Second, isoquinoline derivatives containing specific substituents can also be used as raw materials. First, the derivative is properly functionally converted to make the molecular structure conducive to the introduction of sulfonic acid groups. Then, through a suitable reaction path, the sulfonic acid group is introduced. This method requires fine planning of the synthesis of the starting material and subsequent reaction steps to ensure that the sulfonic acid group can be precisely substituted at the 5-position of isoquinoline, while avoiding unnecessary reactions at other positions.
Furthermore, with the help of transition metal catalysis, the reaction strategy can also be used for the synthesis of 5-isoquinoline sulfonic acid. The reaction system is constructed by selecting suitable transition metal catalysts, ligands and reaction substrates. Under the action of catalysis, selective bonding and functionalization reactions occur between the reactants to achieve the synthesis of 5-isoquinoline sulfonic acid. Although this method has high technical requirements, it can achieve more accurate synthesis, improve product selectivity and yield, and has considerable application prospects in modern organic synthetic chemistry. There are various methods for synthesizing 5-isoquinoline sulfonic acid. According to actual needs and conditions, the advantages and disadvantages of each method should be weighed, and the optimal path should be selected to produce high-purity and high-yield products.
What is the price range of 5-Isoquinolinesulfonic Acid in the market?
The price of 5-isoquinoline sulfonic acid in the market is often difficult to determine. The supply and demand of the city, the purity of the product, and the region of the source are all factors that affect its price.
Looking at the trade of the past, the price of this product varies greatly from time to time, place, and place. If the supply is wide and the supply exceeds the demand, the price may decline; on the contrary, if the product is hindered and the demand is large, the price will rise.
Its price may range from a few yuan to tens of yuan per gram. In block trade, due to the excellent quantity, the price may be slightly cheaper; and in small quantities and high purity, the price must be high.
If you want to get a fixed price, you should consult a chemical material supplier, a trade broker, or a professional market information platform. They can provide a near-real price according to the current market conditions. You can also look at past transactions and push the direction of the price. However, the market is volatile. This is only a reference and cannot be fully trusted.