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What is the main use of Sodium (5Z) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate
(5Z) - 5 - (carbamoyl hydrazide) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro - 1H - indole - 2 - sodium sulfonate This substance has very different uses. In the field of medicine, it is often used as an active ingredient or as a cure for diseases. This substance has a unique structure and can interact with specific targets in organisms, or regulate physiological functions, or intervene in pathological processes. It has the effect of clearing the clouds for some difficult diseases.
In the chemical industry, it also has its uses. It can be used as a special additive to optimize the performance of chemical products. In the synthesis of materials, it may affect the structure and characteristics of materials, so that materials have better stability and durability, etc., to help materials exert their functions in different environments.
In the path of scientific research and exploration, it is an important research object. Researchers use it to explore biochemical mechanisms, drug action principles, etc. By studying its properties, reactions and modes of action, it may open up new scientific understandings, pave the way for subsequent scientific progress, and lead to a deeper and broader scientific world.
What are the chemical properties of Sodium (5Z) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate
This compound is named (5Z) -5- (carbamohydrazone) -1-methyl-6-oxo-2,3,5,6-tetrahydro-1H-indole-2-sodium sulfonate, and its chemical properties are as follows:
This substance has amphoteric characteristics. Because it contains carbamoyl hydrazone group and sodium sulfonate group, the amino group in carbamoyl hydrazone group is basic and can react with acid to form salts; sodium sulfonate group is acidic and can react with base. In different acid-base environments, the degree of ionization will change, affecting solubility and chemical reactivity.
In terms of stability, the compound is relatively stable under normal conditions in solid state, but high temperature, high humidity or strong light irradiation may cause it to decompose. The double bonds and carbonyl groups in its molecular structure can participate in a variety of chemical reactions. Like carbon and nitrogen double bonds, addition reactions can be carried out, and carbonyl groups can undergo nucleophilic addition, providing the possibility for organic synthesis.
In terms of solubility, sodium sulfonate group makes it hydrophilic to a certain extent, and it has good solubility in water. It can form a stable solution and can also be dissolved in some polar organic solvents. However, due to the hydrophobic indole ring structure of the molecule, it has poor solubility in non-polar organic solvents.
In addition, heteroatoms such as nitrogen and oxygen in this compound can be used as ligands to form complexes with metal ions, which may have applications in the field of coordination chemistry. Due to its specific functional group combination, it may have biological activity, which is expected to be used to screen potential pharmaceutical active ingredients in the field of pharmaceutical research.
What is the production method of Sodium (5Z) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate
The preparation method of (5Z) -5- (carbamohydrazide) -1-methyl-6-oxo-2,3,5,6-tetrahydro-1H-indole-2-sulfonate sodium is as follows.
The preparation of this compound often involves a multi-step reaction. The choice of starting material is quite critical, and the compound with indole structure is generally selected as the starting material.
The first step is often to modify the specific position of the indole ring. Under appropriate reaction conditions, the starting indole compound is reacted with a specific reagent to introduce a specific substituent. If you want to introduce methyl into the 1-position of the indole ring, you can choose an appropriate methylation reagent and perform a methylation reaction in the presence of a suitable reaction medium and base. This step requires controlling the reaction temperature, time and amount of reagent to prevent overreaction or side reactions.
The second step is to introduce a (carbamoyl hydrazide fork) group into the 5-position of the indole ring. This step often requires multiple steps of conversion. Or prepare a reagent containing carbamoyl hydrazide structure first, and then react with the indole derivative under specific conditions, and then react through condensation to form a (carbamoyl hydrazide fork) connection. In this process, the choice of solvent and the use of catalyst will affect the efficiency and selectivity of the reaction.
As for the construction of the 6-position carbonyl group, it may be achieved by oxidation reaction. Select a suitable oxidizing agent, according to the structural characteristics of the indole derivative, control the process of oxidation reaction, and make precise oxidation to the 6-position carbonyl group.
After the key substituents on the indole ring are introduced, the sulfonic acid group is introduced at the 2-position and formed into a sodium salt. Indole derivatives are often treated with sulfonation reagents, and then neutralized with bases to form the corresponding sodium sulfonate salt. The whole process requires fine regulation of the reaction conditions of each step, separation and purification of each intermediate product to obtain high purity of (5Z) - 5 - (carbamoyl hydrazide) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro - 1H - indole - 2 - sodium sulfonate.
Sodium (5Z) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate in which areas
(5Z) - 5 - (carbamohydrazone) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro - 1H - indole - 2 - sodium sulfonate, which is widely used in the fields of medicine, chemical industry and materials.
In the field of medicine, it may act as an intermediate for drug synthesis. Due to the characteristics of molecular structure, it can introduce specific functional groups into drug molecules, thereby endowing drugs with different biological activities and pharmacological properties. For example, in the development of new anti-tumor drugs, with this compound participating in the reaction, a molecular structure that precisely binds to the target of tumor cells may be constructed, enhancing the efficacy of the drug and reducing the damage to normal cells.
In the chemical industry, it can be used as an important raw material for the synthesis of dyes or pigments. Due to its structure, the compound can have unique color and stability. After appropriate chemical modification and reaction, bright and long-lasting dyes can be prepared, which are widely used in textiles, printing and other industries, so that fabrics and printed materials show rich and diverse colors that are not easy to fade.
In the field of materials, (5Z) - 5 - (carbamoyl hydrazone) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro- 1H - indole - 2 - sodium sulfonate may improve some properties of the material. For example, in the preparation of polymer materials, its introduction as an additive may improve the mechanical properties and thermal stability of the material, and even endow the material with special optical properties, expanding the application of the material in optical devices and other aspects.
What is the market outlook for Sodium (5Z) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate
Today there is a product called sodium (5Z) - 5- (carbamoyl hydrazone) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro - 1H - indole - 2 - sulfonate. The prospect of this substance in the market has attracted much attention.
The field where this product belongs is mostly involved in medicinal chemistry and fine chemicals. In the field of medicinal chemistry, it may have unique pharmacological activities, which can provide opportunities for the research and development of new drugs. At present, the pharmaceutical industry is hungry for new drugs, and all potential compounds are expected to be turned into good recipes through in-depth research. This compound has a unique structure or can interact with specific biological targets, which can have unexpected effects on the treatment of certain diseases.
As for the field of fine chemicals, it may be used as a special additive for material modification, surfactants, etc. Nowadays, the quality and performance of fine chemical products are constantly improving, and the demand for special functional additives is also increasing. If this product can play its characteristics, it will be able to gain a place in the fine chemical market.
However, although the market prospect is promising, it also faces many challenges. The high cost of research and development is the primary problem. To bring this product from the laboratory to the market requires many tests and optimization, which consumes a lot of manpower, material resources and financial resources. And the market competition is fierce, with similar or alternative products emerging one after another. If you want to stand out, you need to demonstrate its unique advantages, or outperform its peers in performance, or take the lead in cost.
Furthermore, the restrictions of regulations and policies should not be underestimated. Pharmaceutical and chemical products are related to public health and environmental safety, and the supervision is quite strict. Many regulatory requirements must be met in order to enter the market smoothly.
In summary, sodium (5Z) - 5- (carbamoyl hydrazone) - 1 - methyl - 6 - oxo - 2,3,5,6 - tetrahydro- 1H - indole - 2 - sulfonate has an addressable market prospect, but in order to realize its commercial value, it is necessary to overcome many difficulties and plan carefully before it is expected to emerge in the market.