(6E) -6-Imino-5- [2- (4- {[ (4- {2- [ (2E) -2-Imino-8-Oxo-6-Sulfo-2, 8-Dihydronaphthalen-1-Yl] Hydrazino} -2-Sulfophenyl) Carbamoyl] Amino} -3-Sulfophenyl) Hydrazino] -4-Oxo-4,6-Dihydronaphthalene-2-Sulfonic What is the chemical structure of Acid
This is a piece of chemical information encoded in hexadecimal, which can be decoded to obtain: (6E) -6-imino-5- [2- (4- {[ (4- {2- [ (2E) -2-imino-8-oxo-6-sulfo-2,8-dihydronaphthalene-1-yl] hydrazine} -2-sulfonylphenyl) formamido] amino} -3-sulfonylphenyl) hydrazine] -4-oxo-4,6-dihydronaphthalene-2-sulfonic acid.
Its chemical structure is quite complex, composed of many functional groups such as naphthalene ring, imino, oxo, sulfonyl, hydrazine, formamido and so on. As the core skeleton, the naphthalene ring is connected with sulfonyl, imino, oxo and other groups at different positions to endow the substance with specific chemical properties and reactivity. And through the connecting groups such as hydrazine and formamide, a number of phenyl groups containing sulfonyl groups are connected to the naphthalene ring to further enrich its structure. This structure makes the compound have unique physical, chemical and biological activities, and may have potential applications in chemical synthesis, drug research and development, materials science and other fields.
(6E) -6-Imino-5- [2- (4- {[ (4- {2- [ (2E) -2-Imino-8-Oxo-6-Sulfo-2, 8-Dihydronaphthalene-1-Yl] Hydrazino} -2-Sulfophenyl) Carbamoyl] Amino} -3-Sulfophenyl) Hydrazino] -4-Oxo-4, What are the physical properties of 6-Dihydronaphthalene-2-Sulfonic Acid
(This substance) 6-imino-5 - [2 - (4 - {[ (4 - {2 - [ (2) - 2 - imino - 8 - oxo - 6 - sulfonyl - 2,8 - dihydronaphthalene - 1 - yl] hydrazine} -2 - sulfophenyl) carbamyl] amino} -3 - sulfophenyl) hydrazine] -4 - oxo - 4,6 - dihydronaphthalene - 2 - sulfonic acid, this is an organic compound with a complex structure. In terms of physical properties, it is mostly solid under normal conditions, and the cover is tightly arranged due to its strong intermolecular forces. Looking at its solubility, due to the rich hydrophilic groups such as sulfonic acid groups in the molecule, it can form a homogeneous dispersion system in polar solvents such as water, or with a certain solubility; however, in non-polar solvents such as alkanes, the solubility is extremely low, because the molecular polarity and non-polar solvents are significantly different, and it is difficult to miscible with each other. Regarding the melting point, in view of the complex molecular structure and the existence of many hydrogen bonds, conjugated systems, etc., or with a high melting point, more energy is required to overcome the intermolecular forces and realize the transition from solid to liquid. As for the color, or due to the existence of the conjugate system in the molecule, it absorbs light of a specific wavelength, resulting in a specific color, or yellow, orange, etc. Its density may be relatively large due to the close molecular structure and the variety and number of atoms. The physical properties of this compound are closely related to its unique molecular structure. The structure determines the properties, and the properties reflect the structure. The two complement each other and are inseparable.
(6E) -6-Imino-5- [2- (4- {[ (4- {2- [ (2E) -2-Imino-8-Oxo-6-Sulfo-2, 8-Dihydronaphthalene-1-Yl] Hydrazino} -2-Sulfophenyl) Carbamoyl] Amino} -3-Sulfophenyl) Hydrazino] -4-Oxo-4, 6-Dihydronaphthalene-2-Sulfonic What is the application field of Acid
This compound is named (6E) -6-imino-5- [2- (4- {[ (4- {2- [ (2E) -2-imino-8-oxo-6-sulfonyl-2,8-dihydronaphthalene-1-yl] hydrazine} -2-sulfonylphenyl) formamido] amino} -3-sulfonylphenyl) hydrazine] -4-oxo-4,6-dihydronaphthalene-2-sulfonic acid. Its application field is in the context of Tiangong Kaiwu, or in pigments, dyeing and other related technologies.
In ancient times, dyeing was an important process, and the color of fabrics was related to many aspects of life. This compound may impart a unique color to the fabric due to its structure containing a variety of chromogenic groups and sulfonic acid groups, etc., and the sulfonic acid groups make it water-soluble, which is conducive to dispersion in the dye solution and uniform dyeing.
In addition, in the preparation of pigments, it may be used as a pigment component. Its complex structure and groups endow unique color stability and gloss, adding color to paintings, lacquer ware, etc. "Tiangong Kaiwu" records the preparation and application of a variety of pigments. In it, this compound may be an emerging choice, adding color to traditional processes, and bringing new possibilities and rich color expressions to craftsmen in the fields of fabric dyeing, pigment preparation, etc.
(6E) -6-Imino-5- [2- (4- {[ (4- {2- [ (2E) -2-Imino-8-Oxo-6-Sulfo-2, 8-Dihydronaphthalene-1-Yl] Hydrazino} -2-Sulfophenyl) Carbamoyl] Amino} -3-Sulfophenyl) Hydrazino] -4-Oxo-4, What are the synthesis methods of 6-Dihydronaphthalene-2-Sulfonic Acid
Alas! To obtain (6E) - 6 - imino - 5 - [2 - (4 - {[ (4 - {2 - [ (2E) - 2 - imino - 8 - oxo - 6 - sulfonyl - 2,8 - dihydronaphthalene - 1 - yl] hydrazine} -2 - sulfonylphenyl) formamido] amino} -3 - sulfonylphenyl) hydrazine] - 4 - oxo - 4,6 - dihydronaphthalene - 2 - sulfonic acid, the synthesis method is as follows.
First, the relevant naphthalene compound should be taken as the starting material. Choose a naphthalene derivative with a specific substituent, such as an amino group or a sulfonyl group in an appropriate position. Cover these groups in the subsequent reaction, will be the key reaction check point.
Second, through hydrazination reaction. React the naphthalene derivative with an appropriate hydrazine reagent to form an intermediate containing a hydrazine group. This reaction needs to be controlled under suitable reaction conditions, such as temperature, pH and reaction time. If the temperature is too high or too low, it can cause deviation of the reaction, or the product is impure, or the reaction rate is improper.
Furthermore, the amidation reaction is carried out. The fragment containing formamide group is introduced to bind to the intermediate containing hydrazine group. In this process, a condensing agent may be used to promote the formation of amide bonds. The selection of an appropriate condensing agent and the precise control of its dosage are related to the success or failure of the reaction and the yield of the product.
After that, a series of substitution reactions are carried out. The groups on each benzene ring are replaced in sequence according to the design to achieve the basic structure of the target molecule. In each step of the substitution reaction, the activity of the substrate and the selectivity of the reagent need to be carefully observed to ensure that the reaction proceeds in the desired direction.
Between each step of the reaction, it is still necessary to make good use of the separation and purification method. Such as column chromatography, recrystallization, etc., to remove impurities, obtain pure intermediates, and then ensure the purity of the final product.
Overall, the synthesis of this compound requires proficiency in the control of each step of the reaction, a clear understanding of the selection and use of materials, and familiarity with separation and purification techniques.
(6E) -6-Imino-5- [2- (4- {[ (4- {2- [ (2E) -2-Imino-8-Oxo-6-Sulfo-2, 8-Dihydronaphthalene-1-Yl] Hydrazino} -2-Sulfophenyl) Carbamoyl] Amino} -3-Sulfophenyl) Hydrazino] -4-Oxo-4, What is the safety of 6-Dihydronaphthalene-2-Sulfonic Acid
Now you have asked (6E) - 6 - imino - 5 - [2 - (4 - {[ (4 - {2 - [ (2E) - 2 - imino - 8 - oxo - 6 - sulfonyl - 2,8 - dihydronaphthalene - 1 - yl] hydrazine} -2 - sulfonylphenyl) formamido] amino} -3 - sulfonylphenyl) hydrazine] - 4 - oxo - How is the safety of 4,6 - dihydronaphthalene - 2 - sulfonic acid. This substance has a complex structure and a long name, which is difficult to explore for safety.
The method of viewing Fu's "Tiangong Kaiwu", if you want to know the nature of the substance, you should observe it from its source, production method, and use. However, there is no record of this substance, and there is no ancient analogue to learn from. However, according to common sense, this material containing sulfo groups, imino groups and other groups, sulfonic acids are mostly acidic or corrosive, and they may react when they meet other substances. The genus imino and hydrazine groups may have certain activities and can combine with various substances. If they enter the human body or change with biochemical substances in the body, they will cause physiological disorders.
Although there is no empirical evidence to clarify its details, it is deduced from the nature of chemistry. If this thing is not suitable for use, or there is a risk of safety, it should be handled with caution to prevent it from coming into contact with the skin, eyes, etc., and it should not be taken by mistake. The environment used also needs to be well ventilated to avoid its volatile gas damage to people. In short, its safety should not be ignored. Only when it is carefully inspected by scientific methods can its true appearance be known and the user is safe.