What is the chemical structure of this product'Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate '
This is the chemical structure analysis of "Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate". Looking at its name, this compound is composed of several parts.
"Sodium" is also sodium, showing that its compound is a sodium salt. "4- (4- (N-Methylacetamido) Phenyl - 1 - Amino) ", this part contains a benzene ring structure. The fourth position of the benzene ring is connected with a group containing N-methylacetamido, and the first position of the benzene ring is connected with an amino group.
"-1 - Amino - 9,10 - Dioxoanthracene - 2 - Sulphonate", it can be seen that the compound still contains an anthraquinone structure, with carbonyl groups at positions 9 and 10, sulfonic acid groups at position 2, and amino groups at position 1.
In summary, this compound has anthraquinone as the core structure, with amino groups and sulfonic acid groups at positions 1 and 2, respectively, and groups containing N-methylacetamide groups at position 4 through a benzene ring, which is in the state of sodium salt as a whole. Its structure is complex, and the interaction of various groups may endow the compound with unique physicochemical properties and biological activities.
'Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate 'What are the main application fields?
"Sodium 4- (4- (N - methylacetamido) phenyl - 1 - amino) - 1 - amino - 9,10 - dioxoanthracene - 2 - sulfonate" The main application fields of this product are as follows:
First, in the field of printing and dyeing textiles, it can be used as a high-quality dye. Because of its unique chemical structure, it can be tightly combined with fabric fibers, with uniform color and bright color, and good washing fastness. Whether it is natural fibers such as cotton and linen silk or chemical fiber fabrics, it can obtain brilliant colors and add color to the printing and dyeing industry.
Second, in biomedical research, this product may have potential uses. With its special structure and properties, it can be developed as a fluorescent probe for marking and imaging of cells and tissues. Scientists can use it to track biomolecular activities, observe cell physiology and pathological processes, and help frontier medical exploration.
Third, in the field of materials science, it may be able to participate in the creation of functional materials. For example, in optical materials, the material is endowed with special optical properties, such as fluorescence emission, to meet the needs of special optical materials in optoelectronic devices and other fields, and contribute to the research and development of new materials. Fourth, in the field of analysis and testing, due to its specific reactions to specific substances or substances, it can be developed as a detection reagent for the accurate determination of the content of specific components in environmental samples and biological samples, providing a powerful tool for analysis and testing.
'Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate 'What is the production process?
"Sodium 4- (4- (N - Methylacetamido) Phenyl - 1 - Amino) -1 - Amino - 9,10 - Dioxoanthracene - 2 - Sulphonate" The production process of this thing, although there is no direct corresponding record in ancient books, but with today's scientific knowledge, it is as orderly as alchemy.
Initially, when looking for suitable raw materials. Selecting aromatic compounds with specific structures is like looking for the spirit ore of alchemy. This is the foundation. Among them, 4- (4- (N - Methylacetamido) Phenyl - 1 - Amino) related raw materials and 1 - Amino - 9,10 - Dioxoanthracene - 2 - Sulphonate precursors need to be carefully selected, purity and quality are the key, just like alchemy drug selection, not sloppy.
Then, in the reactor, at a suitable temperature and pressure, supplemented by catalytic agents, just like the temperature and auxiliary agents of alchemy. Temperature control, such as the temperature of alchemy fire, high or low can cause reaction errors. The adjustment of pressure is also the key, stable and appropriate pressure, so that the collision between molecules is orderly, and the reaction can move forward. The catalyst is like the divine medicine of alchemy, which accelerates the reaction process and converts the raw material into the target product.
During the reaction process, it is necessary to closely monitor and observe its changes with modern instruments, such as alchemists observing the change of heat and the fineness of the medicine. After the reaction is completed, the product may contain impurities, which need to be purified by separation and purification. Chromatography or extraction can be used, just like removing the residue after alchemy, leaving the essence, so that the product is pure and reaches the required standard before the finished product can be obtained.
'Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate 'Quality Standards
"Sodium 4- (4- (N - Methylacetamido) Phenyl - 1 - Amino) -1 - Amino - 9,10 - Dioxoanthracene - 2 - Sulphonate" The Quality Standards for this product are as follows:
From the point of view, it should be pure and free of impurities, with good color and shape, and in a uniform state. The amount of main ingredients contained in this product is very important. It should reach a very high proportion, and it should be less than the established standard value to be qualified. The amount of impurities needs to be strictly controlled. Each impurity has its limited range and must not exceed the moment.
Its solubility is also a key indicator. In a specific solvent, it should be able to dissolve quickly and fully without any precipitation or suspension, so as to ensure that it can play a smooth role in subsequent applications.
Stability is also the key consideration. Under different temperature and humidity, light and other conditions, it should be able to maintain its chemical properties stable, without decomposition, deterioration and other conditions, so as to ensure the same quality during storage and use.
In terms of particle size, it should meet specific distribution requirements and be uniform in size, so as to ensure that it can be used in various reactions or applications. The reaction rate is uniform and the effect is stable.
In addition, its pH also needs to be within the appropriate range, and peracid or peralkali may affect its performance and compatibility with other substances.
These many Quality Standards are the key to ensuring that the product is of high quality and can perform best in various fields of application.
'Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate 'What is the market price range for the product?
I do not know the market price range of the product "Sodium 4- (4- (N-Methylacetamido) Phenyl-1-Amino) -1-Amino-9, 10-Dioxoanthracene-2-Sulphonate". The name of this substance is quite complicated, and the price in the market may vary for many reasons.
First, the price must be different depending on the quality. If the quality is high and pure, and there are few impurities, it is required for high-demand fields such as scientific research and medicine, and the price is not cheap; if the quality is inferior, it is only suitable for ordinary industrial use, and the price may be slightly lower.
Second, the supply and demand situation is also the main reason. If there are many people who want it, but the quantity of production is small, and the supply is in short supply, the price will be high; on the contrary, if the market is flooded and no one cares, the price will drop.
Third, the producer and the place of origin also have an impact. Well-known large factories produce output with excellent craftsmanship and strict quality control, and the price may be higher than that of small factories; if the place of origin has convenient transportation, abundant resources, and low cost, the price may also be different.
Fourth, packaging and quantity are also related. Small quantities of fine packaging, the price may be high; large quantities of whole packaging may have discounts.
In my opinion, if you want to know the exact price range, you need to consult chemical product distributors, trading platforms, or market surveys to get accurate numbers.