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What is the chemical structure of Sodium 4- ({4- [Acetyl (Methyl) Amino] Phenyl} Amino) -1-Amino-9,10-Dioxo-9, 10-Dihydroanthracene-2-Sulfonate
This compound is named 4- ({4- [acetyl (methyl) amino] phenyl} amino) -1-amino-9,10-dioxo-9,10-dihydroanthracene-2-sulfonate sodium, and its chemical structure is analyzed as follows:
Anthraquinone skeleton is the core of this compound, just like the cornerstone of a building. Anthraquinone is composed of three fused benzene rings, and is replaced by carbonyl at positions 9 and 10. It takes the form of 9,10-dioxo-9,10-dihydroanthracene, which is an important structural unit of many dyes and functional materials.
is attached to the second position of anthraquinone, with a sulfonic acid group, and forms a sodium salt, that is, -SO 🥰 Na. The sulfonic acid group imparts water solubility to the compound, as if it is covered with a water-soluble "coat". In dye applications, this property helps it to disperse uniformly in aqueous solutions and bind to substrates.
1 is connected to the amino group (-NH ²), while the structure of the group connected to the 4 position is more complex, 4- ({4- [acetyl (methyl) amino] phenyl} amino). This group is derived from the benzene ring. The hydrogen atom of the amino group at the 4 position of the benzene ring is replaced by the acetyl (methyl) amino group, that is, -N (COCH) (CH), and the benzene ring is connected to the anthraquinone 4 position through the amino group. The existence of such complex substituents may have a significant impact on the color, stability and interaction with other substances of the compound.
The chemical structure of this compound is a combination of functional groups, and each group works together to give it unique physical and chemical properties and potential application value, such as in the fields of dyes and pigments.
What is the main use of Sodium 4- ({4- [Acetyl (Methyl) Amino] Phenyl} Amino) -1-Amino-9,10-Dioxo-9, 10-Dihydroanthracene-2-Sulfonate
Sodium 4 - {4 - [Acetyl (Methyl) Amino] Phenyl} Amino - 1 - Amino - 9,10 - Dioxo - 9,10 - Dihydroanthracene - 2 - Sulfonate This compound is an important compound in the field of organic synthesis. Its main uses are quite extensive, and it plays an extraordinary role in the manufacture of dyes.
Because of its unique molecular structure, it gives it excellent hair color properties. In the textile printing and dyeing industry, it is often used as a dye to make fabrics show a bright and long-lasting color. It can be tightly combined with fabric fibers and is not easy to fade after multiple washes, greatly enhancing the aesthetics and commercial value of fabrics.
In the field of ink production, it also plays a key role. With its good solubility and stability, it can effectively ensure the uniform color of the ink and the appropriate drying speed. When the ink is applied to printing paper, plastics and other materials, it can show clear and bright patterns and text, which greatly improves the printing quality.
In the field of scientific research, this compound is also an important research object. Through in-depth investigation of its structure and properties, researchers can further develop better performance dyes and functional materials, promoting the development of organic chemistry and materials science.
In summary, Sodium 4 - {4 - [Acetyl (Methyl) Amino] Phenyl} Amino - 1 - Amino - 9,10 - Dioxo - 9,10 - Dihydroanthracene - 2 - Sulfonate, with its unique properties, plays an indispensable role in many industries and is of great significance to the development of related industries.
What is the safety of Sodium 4- ({4- [Acetyl (Methyl) Amino] Phenyl} Amino) -1-Amino-9,10-Dioxo-9, 10-Dihydroanthracene-2-Sulfonate
This is about the safety of "4- ({4- [acetyl (methyl) amino] phenyl} amino) -1-amino-9,10-dioxo-9,10-dihydroanthracene-2-sodium sulfonate". This substance is like an ancient rare medicinal pill, and its safety needs to be carefully observed.
Observe the structure of this compound, containing anthracycline, sulfonic acid radical group, etc. In ancient medicine refining, the composition is complex and there are many variables. In this substance, although the anthracycline structure has unique chemical properties, there may be latent risks, such as some anthracyclines, or biological activity, which can interact with biological macromolecules and affect the normal operation of the body.
Although the sulfonic acid group can increase its water solubility, it may also change the metabolic pathway of the compound in the organism. Before detailed experimental verification, its safety is uncertain.
If this substance is used in industry, such as ancient workshops, the operator needs to be strictly protected, because it may be irritating to the skin and eyes, such as improper contact, it may cause redness, swelling and pain. If it flows into the environment, such as ancient foreign bodies entering the rivers and lakes, or affecting the ecological balance, due to the unknown tolerance of organisms, or causing some organisms to be disturbed.
In short, the safety of this material still needs to be further explored, and it cannot be used rashly. It needs to be like the ancients in alchemy, and after many trials, the pros and cons can be known.
What is the synthesis method of Sodium 4- ({4- [Acetyl (Methyl) Amino] Phenyl} Amino) -1-Amino-9,10-Dioxo-9, 10-Dihydroanthracene-2-Sulfonate
To make this Sodium+4-%28%7B4-%5BAcetyl%28Methyl%29Amino%5DPhenyl%7DAmino%29-1-Amino-9%2C10-Dioxo-9%2C10-Dihydroanthracene-2-Sulfonate, the method is as follows:
First take an appropriate amount of 1-amino-9,10-dioxo-9,10-dihydroanthracene-2-sulfonic acid and place it in a clean reactor. Add an appropriate amount of solvent, such as dimethylformamide, to fully dissolve the material into a uniform solution.
Take 4- ((acetyl (methyl) amino) phenyl) amino) reactants and slowly add them to the above solution. During this period, the temperature should be strictly controlled, and the temperature should be stabilized in a suitable range of about 60 to 80 degrees Celsius by water or oil bath. At this temperature, stir the reaction for several times to fully combine the two reactions.
After the reaction is completed, the reaction liquid is slowly poured into a large amount of ice water to precipitate the product. Collect the precipitated solids by filtration. Then wash with an appropriate amount of ice water several times to remove impurities.
The washed solids are placed in an oven at a suitable temperature, such as 40 to 50 degrees Celsius, and dried to a constant weight to obtain the Sodium+4-%28%7B4-%5BAcetyl%28Methyl%29Amino%5DPhenyl%7DAmino%29-1-Amino-9%2C10-Dioxo-9%2C10-Dihydroanthracene-2-Sulfonate product. Throughout the process, pay attention to the operation specifications to ensure the cleanliness of the reaction environment to prevent impurities from mixing and affecting the purity and quality of the product.
Sodium 4- ({4- [Acetyl (Methyl) Amino] Phenyl} Amino) -1-Amino-9,10-Dioxo-9, 10-Dihydroanthracene-2-Sulfonate What are the advantages over congeneric products
Sodium 4 - {4 - [Acetyl (Methyl) Amino] Phenyl} Amino - 1 - Amino - 9,10 - Dioxo - 9,10 - Dihydroanthracene - 2 - Sulfonate This product has many advantages compared to congeneric products.
First of all, in terms of color performance, its hair color is uniform and bright, just like the ancient Danqing hand painted, full of color and evenly distributed, which can make the dye stand out, like a picture scroll. When dyeing fabrics, it can give the fabric a unique and bright color, making the fabric look like a gorgeous coat.
Secondly, its stability is very good. Whether it is in the face of changes in temperature and humidity of the external environment, or the influence of light, it can maintain its own characteristics and stability, and is not easy to fade or change color. Just like the ancient wall that has been baptized over the years, it is still as strong as ever, and it is not afraid of wind and rain erosion. It can maintain the color of the dye for a long time, making its color last as new.
Furthermore, it has good solubility. During the preparation of the dye solution, it can dissolve quickly and fully, just like the smooth melting of salt in water, without agglomeration, precipitation, etc., which provides convenience for the smooth development of the dyeing process and improves production efficiency. It is like a smooth and unimpeded river with continuous water flow.
In addition, its environmental protection characteristics are also commendable. In the process of production and use, it is less harmful to the environment, in line with the current concept of green development, just like the ancient idea of harmonious coexistence with nature, and contributes to sustainable development.