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This product Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1) What is the chemical structure
This is about the chemical structure of the compound "Benzenesulfonate, 4- [ (E) -2- [1- [[ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1) ". This compound can be found from the naming of its structure. "Benzenesulfonate" shows that it contains benzene sulfonate group, above the benzene ring, the sulfonic acid group (-SO 🥰) is an important part. "4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-" This part indicates that there is a specific structural group attached at the No. 4 position of the benzene ring. ( E) 2- [1- [[ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl, this group contains an azo group (-N = N-), and is connected to 2- [1- [[ (2-chlorophenyl) amino] carbonyl] -2 -oxypropyl, wherein 2-chlorophenyl (2-Chlorophenyl), that is, there is a chlorine atom substitution at the No. 2 position on the benzene ring; 1- [ (2-chlorophenyl) amino] carbonyl], which means that the amino group is connected to the carbonyl group, and the carbonyl group is connected to other structures; 2-oxypropyl, indicating a propyl group structure containing a carbonyl group. 3 - Nitro -, indicating that the benzene ring has a nitro group (-NO 2) at position 3. "Calcium Salt (1:1) ", indicating that this compound is a calcium salt, and the ratio of calcium ions to the above-mentioned anion containing benzenesulfonate is 1:1. Overall, the chemical structure of this compound is based on benzenesulfonate, and the benzene ring is connected with a specific structure containing azo groups, chlorophenyl groups, carbonyl groups, nitro groups, etc., and forms a salt with calcium ions.
Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1) In which industries is it used?
Benzenesulfonate, 4- [ (E) -2 - [1- [[ (2 -chlorophenyl) amino] carbonyl] -2 -oxypropyl] diazenyl] -3 -nitro-, calcium salt (1:1), this substance has many applications in printing and dyeing, medicine, agriculture and other industries.
In the printing and dyeing industry, because of its specific chemical structure, it can be used as a new type of dye intermediate. The diazenyl group and other structures it contains give it unique color properties, which can provide rich and firm color for fabrics. By combining with fabric fibers and going through a series of printing and dyeing processes, fabrics can present vivid colors, enhance the aesthetics and commercial value of fabrics.
In the field of medicine, this substance may be used as a key raw material for drug synthesis. The structures of benzene ring, chlorophenyl group and nitro group can be chemically modified to adjust the activity, solubility and targeting of drug molecules. If it is introduced into drug molecules through rational design of reactions, it is expected to develop therapeutic drugs for specific diseases, such as certain inflammation or tumors.
In agriculture, it may be used as a pesticide auxiliary or a new type of pesticide active ingredient. The structures such as chlorine atoms can enhance the inhibition and killing ability of pests or pathogens. As an adjuvant, it can improve the physical and chemical properties of pesticide formulations, such as enhancing the dispersibility and wettability of pesticides, enhancing the adhesion and penetration of pesticides on the surface of crops, and enhancing the use effect of pesticides.
What is the production process for Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1)
This is a rather complex chemical substance called Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1). Its production process must be delicate and complicated.
To make this product, first of all, various raw materials need to be carefully selected and prepared. It involves compounds containing specific groups such as chlorophenyl and nitro. These raw materials need to have a very high purity in order to ensure the quality of the product.
During the reaction process, multiple chemical reactions may be required. First, chlorophenyl compounds and substances containing carbonyl and nitro groups undergo condensation reactions to form key intermediates. This step requires precise control of reaction conditions, such as temperature, pressure, and catalyst dosage. Too high or too low temperature may cause abnormal reaction rates and affect the yield and purity of the product. Improper pressure may also cause the reaction to proceed in an unexpected direction.
After the intermediate is formed, it combines with calcium ions to form a calcium salt. In this process, factors such as the concentration of calcium ions and the pH of the reaction system are crucial. If the pH is unbalanced, calcium ions may not be able to combine properly with the intermediate product to form impurities.
At the same time, in the entire production process, the separation and purification links cannot be ignored. Through distillation, crystallization, chromatography and other technologies, the target product is precisely separated from the reaction mixture, and impurities are removed to achieve the required purity standards.
The production of this chemical substance requires strict control of all links, and a slight error will affect the quality and performance of the product.
Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1) What are the physical and chemical properties?
This is 4 - [ (E) -2 - [1- [ (2 -chlorophenyl) amino] carbonyl] -2 -oxopropyl] diazo] -3 -nitrobenzene sulfonate calcium salt (1:1), and its physical and chemical properties are quite characteristic.
From the perspective of physical properties, this compound usually appears in solid form, and its color may be white to light yellow powder. Its solubility is limited by different solvents. The solubility may vary in polar solvents, but it may be poor in water. In some organic solvents such as ethanol and acetone, it may have a certain solubility, but it also varies depending on specific conditions. Key physical parameters such as melting point and boiling point will vary due to the complexity of molecular structure and crystal structure differences, and need to be accurately determined by experiments.
In terms of chemical properties, the benzene ring structure in this compound has the general chemical activity of aromatic hydrocarbons, and the diazo base is active. It is prone to diazotization and coupling reactions, and can be used to prepare specific dyes or organic synthesis intermediates. Nitro groups have strong electron absorption, which will affect the electron cloud density of the benzene ring, making the benzene ring more prone to nucleophilic substitution reactions. Sulfonic acid groups can endow compounds with certain water solubility and ionic properties, and the calcium salt form affects their stability and reactivity in solution. In addition, the compound has different stability in acidic or basic environments, and the acid-base conditions change or cause it to undergo chemical reactions such as hydrolysis and decomposition.
What is the market outlook for Benzenesulfonate, 4- [ (E) -2- [1- [ (2-Chlorophenyl) Amino] Carbonyl] -2-Oxopropyl] Diazenyl] -3-Nitro-, Calcium Salt (1:1)?
"Tiangong Kaiwu" is simple and concise in style, and the answer based on it is as follows:
Today there is a name benzenesulfonate, 4- [ (E) -2- [1- [ (2 -chlorophenyl) amino] carbonyl] -2 -oxopropyl]] diazo-3-nitro-, calcium salt (1:1). This product is in the market, and the prospect is unpredictable. Looking at it, it may have potential in the field of chemical and pharmaceutical products. Chemists may use it as raw materials to produce new products through clever technology cooperation to meet the needs of industry. Pharmacists, or because of their special nature, explore ways to cure diseases and help people's health.
However, there are also hidden worries. The method of synthesis may require complex order, cost and time-consuming, resulting in high costs and weak competition in the market. And the characteristics of this product are unknown, and the impact on the environment and the human body is unknown. If it is harmful, the promotion will be hindered, which will definitely lead to concerns from all parties.
Also look at the supply and demand of the market, similar competing products, or have already entered the market first, and occupy the advantage of the market. If you want to profit from this product, you must study its unique strengths, develop new uses, and improve quality. If we can solve the difficulties of synthesis, clarify its advantages and disadvantages, and respond to the needs of the city, we may be able to establish a foothold in the city and open up a different situation; otherwise, we may find it difficult to escape the difficulties, hidden in the city, and no one cares.