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Disodium 3-Chloro-4- {4- [ (E) - (2-Methoxy-5- {[2- (Sulfonatooxy) Ethyl] Sulfonyl} Phenyl) Diazenyl] -3-Methyl-5-Oxo-4,5-Dihydro-1H-Pyrazol-1-Yl} -5-Methylbenzenesulfonate What product is it?
This is the name of a chemical compound, and its full name is "Diethoxy-3-chloro-4 - {4 - [ (E) - (2-methoxy-5 - {[2 - (sulfonyloxy) ethyl] sulfonyl} phenyl) diazo] -3 -methyl-5-oxo-4,5 -dimethoxy-1H-pyrazole-1-yl} -5 -methylbenzene sulfonic acid". The name of this chemical compound is Xian Xian, which is described by the specific name of the polymethyl group.
"Diphenyl" indicates that the compound contains chlorine. "3-chlorine" refers to the third chlorine atom on the benzene. " 4 - {4 - [ (E) - (2 - methoxy - 5 - {[2 - (sulfonyloxy) ethyl] sulfonyl} phenyl) diazo] -3 - methyl - 5 - oxo - 4,5 - di- 1H - pyrazole - 1 - yl} "part, relates to a derivative of pyrazolyl, and the diazo group is connected to a specific substituted phenyl group, wherein the phenyl group has methoxy, sulfonyl and other substituents." 5 - methylbenzenesulfonic acid "shows that the fifth position of benzene has a methyl group, and the whole group exists in the form of benzenesulfonic acid.
This compound is often used in the fields of chemical synthesis, materials science, or chemical research. Its specific or specific properties, such as solubility, anti-reactivity, etc. In chemical synthesis, or as a neutral compound, to improve the properties of the compound. In the field of materials, or because of its special properties, such as increasing the quality of the material or improving the surface properties of the material. In the research of materials, or based on its properties, it is used as a candidate molecule to explore its biological activity and biological effects. In other words, its use is based on the research and application of the properties of the compound.
Disodium 3-Chloro-4- {4- [ (E) - (2-Methoxy-5- {[2- (Sulfonatooxy) Ethyl] Sulfonyl} Phenyl) Diazenyl] -3-Methyl-5-Oxo-4,5-Dihydro-1H-Pyrazol-1-Yl} -5-Methylbenzenesulfonate What are the application fields?
This is a chemical substance called dimethoxy-3-chloro-4 - {4 - [ (E) - (2-methoxy-5 - {[2 - (sulfonyloxy) ethyl] sulfonyl} phenyl) diazo] -3 -methyl-5-oxo-4,5 -dimethylol-1H-pyrazole-1-yl} -5 -methylbenzene sulfonic acid. Its use, in the dyeing and finishing, can be used as a dye, and its characteristics can make the color of the material bright and the fastness is very good, and it is not easy to fade when washed and illuminated. In the field of scientific research, because of its specialization, it can be used for biochemical research, helping researchers to explore the reverse mechanism and properties of the material. In terms of material modification, specific materials can be added to the material to give new properties, such as improving the water quality and resistance of the material, etc., in order to expand the application of the material. In addition, this compound has its indispensable role in many fields such as engineering and scientific research, promoting the development of multiphase engineering.
Disodium 3-Chloro-4- {4- [ (E) - (2-Methoxy-5- {[2- (Sulfonatooxy) Ethyl] Sulfonyl} Phenyl) Diazenyl] -3-Methyl-5-Oxo-4,5-Dihydro-1H-Pyrazol-1-Yl} What is the production process of -5-Methylbenzenesulfonate?
To make this product called "Disodium 3 - Chloro - 4 - {4 - [ (E) - (2 - Methoxy - 5 - {[2 - (Sulfonatooxy) ethyl] Sulfonyl} Phenyl) Diazenyl] -3 - Methyl - 5 - Oxo - 4,5 - Dihydro - 1H - Pyrazol - 1 - Yl} -5 - Methylbenzenesulfonate", the preparation method needs to be exquisite.
At the beginning, when the appropriate starting materials are used, according to the principles of chemistry, the ratio is ingenious. For example, benzene compounds with specific structures, nitrogen-containing heterocycles, etc. are selected as the foundation.
In the reaction kettle, first use mild conditions to make the raw materials blend with each other. Control at a suitable temperature, or heat slightly, or heat slightly, do not make the temperature too high, causing damage to the raw materials. Such as some active groups, it is easy to change at high temperatures.
During this period, the addition of catalysts is extremely critical. When choosing a catalyst with suitable performance, it is necessary to promote the reaction and accelerate the bonding and conversion between molecules. The amount of it needs to be precisely pinched. If it is too much, the reaction will be too fast and difficult to control; if it is too little, the reaction will be slow and take a long time.
When reacting, also pay attention to the reaction environment. Or in an inert gas atmosphere, avoid the interference of raw materials and external impurities to ensure the purity of the reaction.
When the reaction is coming to an end, it is necessary to use delicate separation and purification techniques. Or use chromatography to make the product and impurities belong to their respective positions; or recrystallize the method to make the product pure precipitation. This all needs to be decided in detail according to the characteristics of the product.
In this way, after many manipulations and careful actions, this fine product can be obtained.
Disodium 3-Chloro-4- {4- [ (E) - (2-Methoxy-5- {[2- (Sulfonatooxy) Ethyl] Sulfonyl} Phenyl) Diazenyl] -3-Methyl-5-Oxo-4,5-Dihydro-1H-Pyrazol-1-Yl} What are the physicochemical properties of -5-Methylbenzenesulfonate?
This is a complex organic compound named disodium 3-chloro-4 - {4 - [ (E) - (2-methoxy-5 - {[2 - (sulfonyloxy) ethyl] sulfonyl} phenyl) diazo] -3 -methyl-5-oxo-4,5 -dihydro-1H-pyrazole-1-yl} -5 -methylbenzene sulfonate. Its physical and chemical properties are as follows:
Viewed, it is often solid, or powder, white or yellowish in color, depending on the purity and preparation process.
When it comes to solubility, due to the rich sulfonic acid group in the structure, it has quite good solubility in water. This is because sulfonic acid has strong hydrophilicity and can interact with water molecules to form hydrogen bonds, etc., so it is easily soluble in the aqueous phase system.
In terms of stability, under conventional environmental conditions, if properly stored, avoid high temperature, high humidity and strong acid-base environment, it can maintain relatively stable. In case of high temperature, the chemical bonds in the molecule may break due to sufficient energy, causing decomposition reactions to occur; in strong acid and alkali media, sensitive chemical bonds in its structure, such as diazo groups, may be affected, causing structural changes. The melting point of
is also an important physical property, but there is no exact data to support it. However, it is inferred from similar structural compounds that due to the large size of the molecule and the existence of many polar groups and conjugated systems, the intermolecular force is strong, and the melting point may be relatively high.
In terms of spectral properties, in the infrared spectrum, the vibration absorption peaks of different chemical bonds are characterized by distinct characteristics. For example, the sulfonic acid group has a strong absorption peak at a specific wave number, indicating its existence; the diazo group also has a corresponding characteristic absorption peak, which is helpful for structural identification. In the ultraviolet-visible spectrum, due to the conjugated system, especially the diazo group and benzene ring, it absorbs in a specific wavelength range and shows a color reaction. This property may be used for quantitative analysis and purity detection.
Disodium 3-Chloro-4- {4- [ (E) - (2-Methoxy-5- {[2- (Sulfonatooxy) Ethyl] Sulfonyl} Phenyl) Diazenyl] -3-Methyl-5-Oxo-4,5-Dihydro-1H-Pyrazol-1-Yl} -5-Methylbenzenesulfonate Is there a safety risk?
Alas! This "disodium 3-chloro-4 - {4 - [ (E) - (2-methoxy-5 - {[2 - (sulfonyloxy) ethyl] sulfonyl} phenyl) diazo] -3 -methyl-5-oxo-4,5 -dihydro-1H-pyrazole-1-yl} -5 -methylbenzene sulfonate" is the name of the chemical substance. To investigate the safety risks of this substance, it is necessary to consider its various characteristics in detail.
Chemical substances, which are multi-terminal in nature, or toxic, or prone to allergies, or have the risk of explosion. This substance has a complex structure and contains groups of chlorine, sulfur and other elements. Chlorine compounds are often toxic and can damage the respiratory, nervous and other systems of the human body. The sulfonyl groups and other structures formed by sulfur may also be irritating and sensitizing under certain circumstances.
If this substance is used in industry, the operation and storage of materials in the production process must be in accordance with specifications. If it is not properly protected, workers may come into contact with it, or cause skin and respiratory diseases. And in the environment, the difficulty of degradation is also related to ecological safety. If it is difficult to degrade, or accumulates in water and soil organisms, it will cause disaster and ecological balance.
Also look at its use. If it is used in medicine, food and other fields, the safety requirements are stricter. Medicine is related to life, food is related to health, and the slightest mistake can lead to disaster. Therefore, it must be tested in detail to clarify its safety before it can be used.
However, only based on its name, it is difficult to determine the full picture of its safety risks. It is necessary to refer to experimental data, previous studies, and examine its physical, chemical, toxicological and other characteristics in detail before making an accurate conclusion. Although it is difficult to say whether it is safe or not, it is wise to treat it with caution and explore it in detail.