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What is Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate?
This is a rather complex chemical substance, the Chinese name may be 5- (carbamoyl hydrazone) -1-methyl-6-oxo-2,3,5,6-tetrahydro-1H-indole-2-sulfonic acid (5E) sodium. Looking at its name, it is an organic compound containing indole structure, and it is modified by sulfonic acid group and carbamoyl hydrazone group, and then forms a sodium salt.
Indole structure is common in many bioactive molecules and natural products, and often has unique physiological activity. Sulfonic acid group can increase its water solubility and is common in the fields of drugs, surfactants, etc. Carbamyl hydrazone groups may also give this compound specific reactivity and biological activity.
Such compounds may be used in the field of medicinal chemistry to develop new drugs, with their structural characteristics and activities to target specific disease targets. Or in the field of materials science, due to their special chemical properties, they are used to prepare materials with special properties, such as ion exchange materials, adsorption materials, etc.
Although it is difficult to know its specific properties and uses from the name, according to the chemical structure laws and the experience of similar compounds, it can be preliminarily speculated that they may have important applications and research value in chemical industry, medicine and other fields.
What are the main uses of Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate?
"Tiangong Kaiwu" says: "The effectiveness of a man's body is due to its nature, and by following the logic, it can lead to its work." Today, there are Sodium- (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate this compound, and its main uses are quite impressive.
This compound may be a key raw material for the development of new drugs in the field of medicine. Due to its unique chemical structure, it may have specific biological activities and can be used to target certain disease targets for precise action. For example, in the development of anti-tumor drugs, it may interact with specific proteins or signaling pathways in tumor cells to inhibit tumor cell growth, proliferation, and even induce apoptosis, providing a new opportunity to overcome cancer problems.
In the field of materials science, it may also exhibit unique properties. It may be used as a functional additive to improve the physical and chemical properties of materials. For example, when added to specific polymer materials, it can enhance the stability, flexibility or endow them with special optical and electrical properties, thereby broadening the application range of materials in electronic devices, optical instruments and many other aspects.
And in the field of bioanalysis, it may serve as a sensitive detection reagent. With its specific binding ability with specific biomolecules, it can achieve high-precision detection of target substances in biological samples, facilitate the efficient development of medical diagnostics, food safety testing, and contribute to the protection of people's health and quality of life.
What are the physicochemical properties of Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate?
This is a sodium (5E) -5- (carbamoyl hydrazide) -1-methyl-6-oxo-2,3,5,6-tetrahydro-1H-indole-2-sulfonate, which has the following physical and chemical properties:
In terms of view, this compound is mostly in a solid state, or in a crystalline state, colored or white, or nearly colorless, often slightly different due to differences in purity and crystal form. Its melting point is a key characteristic, but the exact value varies depending on the measurement conditions and the purity of the sample, about a specific temperature range, which can help to identify and judge the purity.
In terms of solubility, in water solvents, it may have a certain solubility. Due to the sulfonate group in the molecule, this group is hydrophilic and can interact with water molecules, so it is easier to disperse and dissolve in polar solvents. However, in non-polar organic solvents, such as alkanes, its solubility is very small. Due to the large difference between the polarity of the molecule and the non-polar solvent, it is difficult to miscible.
Stability is also an important consideration. In normal temperature, normal pressure and dry environment, this compound can remain relatively stable. In case of high temperature, or reaching a certain temperature limit, the chemical bonds in the molecule may break due to energy gain, causing structural changes and decomposition to produce new substances. And in the strong acid and alkali environment, due to the molecular structure containing reactive groups, or chemical reaction with acid and base, the structure changes and stability is damaged.
Spectral characteristics are also of characterization significance. In infrared spectroscopy, specific chemical bond vibration absorption peaks can be displayed, such as carbamoyl, carbonyl, sulfonate and other groups, each with characteristic absorption in the corresponding wavenumber range, which can help structure confirmation. In nuclear magnetic resonance spectroscopy, hydrogen atoms and carbon atoms are in different chemical environments, and the positions of resonance absorption peaks are different, which can provide atomic connection and spatial structure information in molecules.
What are the synthesis methods of Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate?
To prepare Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxy-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate, there are various methods for its synthesis.
First, 1-methyl-6-oxo-2,3,5,6-tetrahydro-1H-indole-2-sulfonic acid can be selected as the starting material. First, it is condensed with a suitable hydrazine compound, such as aminourea, under suitable reaction conditions, such as in a mild acid-base environment, using an organic solvent as the medium. This reaction can make the carbonyl group on the side of the sulfonic acid group condensate with the hydrazine group of the amino urea to construct the structural part of (5E) -5- (Carbamoylhydrazono). During the process, attention should be paid to the control of the reaction temperature and time. If the temperature is too high or side reactions occur, the reaction will not be complete if the time is too short.
The second one can also find another way. Starting from the basic indole compounds, the target molecular structure is gradually built through multi-step reactions. First, the indole is modified at a specific position, and the methyl-based 1 position is introduced, and then oxidized to construct the 6-oxo structure. Subsequently, the sulfonic acid group is introduced at the 2 position. This step may require the help of sulfonating reagents to regulate the reaction according to the activity and selectivity of the reaction substrate. Finally, the reaction with the reagent containing the amino urea structure completes the connection of the (5E) -5- (Carbamoylhydrazono) fragment to obtain the target product.
During synthesis, the product must be properly separated and purified after each step of reaction. Column chromatography, recrystallization, etc. can be used to ensure the purity of the intermediate product and the final product, so that the synthesis process is smooth and the expected yield and quality are achieved.
What is the market price of Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate?
Today there is a thing called Sodium (5E) -5- (Carbamoylhydrazono) -1-Methyl-6-Oxo-2,3,5, 6-Tetrahydro-1H-Indole-2-Sulfonate, but it is difficult to say how much its market price is.
The market price of this thing often changes for various reasons. First, the amount of production is also. If the origin is abundant and the output is not at risk, the price may be flat; if the raw materials are rare, difficult to harvest, and the production is limited, the price will be high. Second, the demand is also. In the fields of medicine, engineering and technology, if it is widely used, and there are many people who ask for it, the price will rise; if it is used sparsely, and those who need it are few, the price may fall. Third, the realm of trade is also involved. The competition of the city, the increase or decrease of taxes, and the cost of transportation can all make prices rise and fall.
To know the exact price of this item, you should carefully investigate the cities, consult the merchants, and visit the brokers, and compare their similarities and differences to obtain a more accurate number. However, the market is impermanent, and the price is not fixed, or changes instantaneously, so it is difficult to give a constant price.