What is the chemical structure of this product, 2,2 '- (1,2-Ethenediyl) Bis (5- (4- (Bis (2-Hydroxyethyl) Amino) -6- ((2,5-Disulfophenyl) Amino) -1,3,5-Triazin-2-Yl) Amino) Benzenesulfonic Acid) Hexasodium Salt
This is a rather complex chemical substance called 2,2 '- (1,2-ethylene dienyl) bis (5- ((4- (bis (2-hydroxyethyl) amino) -6- ((2,5-disulfonyl) amino) -1,3,5-triazine-2-yl) amino) benzenesulfonic acid) hexasodium salt.
To know its chemical structure, it is necessary to analyze the parts involved in its name. "2,2' - (1,2-ethylene dienyl) " The table has an ethylene dienyl group as a connecting bridge, connecting the two main parts. " Bis (5- ((4- (bis (2-hydroxyethyl) amino) -6- ((2,5-disulfonyphenyl) amino) -1,3,5-triazine-2-yl) amino) benzenesulfonic acid) "This part contains two similar structural units. Among them," 5- ((4- (bis (2-hydroxyethyl) amino) -6- ((2,5-disulfonyphenyl) amino) -1,3,5-triazine-2-yl) amino) "indicates that at position 5 of benzenesulfonic acid, a complex substituent is connected. This substituent is composed of a triazine ring and many amino, sulfonyphenyl and hydroxyethyl groups. The 4th position of the triazine ring is connected with a bis (2-hydroxyethyl) amino group, and the 6th position is connected with a (2,5-disulfonyl) amino group. The "hexasodium salt" means that in this compound, there are six sodium ions that form a salt structure with the sulfonic acid group. In general, its chemical structure is connected by ethylene dienyl groups to two complex substituent-containing benzene sulfonic acid structural units and salts with sodium ions, which is a complex and delicate chemical structure.
2,2 '- (1,2-Ethenediyl) Bis (5- (4- (Bis (2-Hydroxyethyl) Amino) -6- ((2,5-Disulfophenyl) Amino) -1,3,5-Triazin-2-Yl) Amino) Benzenesulfonic Acid) What are the main uses of Hexasodium Salt
2%2C2%27-%281%2C2-Ethenediyl%29Bis%285-%28%284-%28Bis%282-Hydroxyethyl%29Amino%29-6-%28%282%2C5-Disulfophenyl%29Amino%29-1%2C3%2C5-Triazin-2-Yl%29Amino%29Benzenesulfonic Acid% 29 Hexasodium Salt, this is a chemical substance that is commonly used in a wide range of places.
In the field of textile printing and dyeing, it can be used as a reactive dye. It can form covalent bonds with fiber molecules, so that the dye is closely connected to the fiber. In this way, the color fastness of the fabric after dyeing is very good. Whether it is washed with water, rubbed, or exposed to the sun, the color is not easy to fade, and the color is quite bright and bright. It can give the fabric a variety of attractive colors and meet people's high requirements for fabric color.
In the paper industry, it also plays an important role. It can be used for paper dyeing. With its good dyeing properties, the paper can obtain the desired color, improve the aesthetics and commodity value of the paper, and is widely used in all kinds of cultural paper, packaging paper, etc.
It is also indispensable in ink manufacturing. It can be used as an ink pigment, giving the ink excellent tinting power and stability, making the printing pattern clear and full of colors, and it can present a good printing effect on different printing materials, whether it is paper, plastic, or other materials.
This chemical plays a key role in textile printing and dyeing, papermaking, ink manufacturing and other industries, greatly promoting the development and progress of related industries.
What are the advantages of 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Bis (2-Hydroxyethyl) Amino) -6- ((2,5-Disulfophenyl) Amino) -1,3,5-Triazin-2-Yl) Amino) Benzenesulfonic Acid) Hexasodium Salt over congeneric products?
Compared with congeneric products, 2,2 '- (1,2-ethylenedienyl) bis (5- ((4- (bis (2-hydroxyethyl) amino) -6- ((2,5-disulfonylphenyl) amino) -1,3,5-triazine-2-yl) amino) benzenesulfonic acid) hexasodium salt has unique advantages.
This compound exhibits excellence in many aspects. In terms of its chemical structure, the unique bistriazine structure and the ingenious combination of sulfonyl and hydroxyl groups endow it with special physical and chemical properties. From the perspective of solubility, it contains multiple sodium sulfonate groups and has good solubility in water, which is beyond the reach of many congeneric products. This makes it easier to achieve good dispersion in related application scenarios, such as in some processes that require uniform dispersion in aqueous systems, and lays a solid foundation for subsequent reactions or processing.
Furthermore, its affinity for specific substrates or targets is very high. Due to the existence of multiple amino groups and other active check points in the molecule, it can form stable bonds with many substances through hydrogen bonding, electrostatic action, etc. In the process of adsorption and dyeing of fabric fibers by dyes, compared with congeneric products, it can achieve stronger bonding and improve dyeing fastness, both in terms of washing fastness and sun fastness.
In addition, the stability of this compound is also a major highlight. In different temperature and pH environments, it can still maintain its chemical structure and properties relatively stable. For example, in some industrial processes that need to withstand certain temperature changes or different pH levels, it can always maintain good performance, providing strong protection for the stability and continuity of the production process. This advantage also makes it stand out in congeneric products.
What to pay attention to when using 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Bis (2-Hydroxyethyl) Amino) -6- ((2,5-Disulfophenyl) Amino) -1,3,5-Triazin-2-Yl) Amino) Benzenesulfonic Acid) Hexasodium Salt
When using 2,2 '- (1,2-vinyldiyl) bis (5- ((4- (bis (2-hydroxyethyl) amino) -6- ((2,5-disulfonylphenyl) amino) -1,3,5-triazine-2-yl) amino) benzenesulfonic acid) hexasodium salt, pay attention to the following numbers.
The name of this compound is long and complicated, the structure must be exquisite, and its properties may be different from common substances. First and foremost, its chemical properties should be known, because the structure contains sulfonic acid groups and amino groups, etc., or has specific reactivity. Its solubility or in the form of sodium salts has good performance in water. When using, the choice of solvent is crucial. Water or polar organic solvents may be a good choice to ensure uniform dispersion and reaction efficiency.
In terms of safety, although its exact toxicity is not known, chemical substances need to be cautious. Appropriate protective equipment should be worn during operation, such as gloves and goggles, to avoid direct contact with skin and eyes. In case of inadvertent contact, follow the general principles of chemical treatment, rinse with plenty of water in time, and seek medical attention as appropriate.
Storage is also exquisite. Because it is sensitive to environmental factors, it should be stored in a dry, cool and ventilated place, away from heat sources and strong oxidants, etc., to prevent deterioration or cause dangerous reactions. In use, the exact dosage is related to the experimental or production results, and should be measured with a precise measuring tool according to specific needs to achieve the desired effect. Furthermore, the use process may have strict requirements on reaction conditions, such as temperature, pH value, etc., and must be strictly controlled to ensure a smooth reaction and a desired product.
2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Bis (2-Hydroxyethyl) Amino) -6- ((2,5-Disulfophenyl) Amino) -1,3,5-Triazin-2-Yl) Amino) Benzenesulfonic Acid) What is the approximate market price range for Hexasodium Salt?
In my opinion, this "2%2C2%27-%281%2C2-Ethenediyl%29Bis%285-%28%284-%28Bis%282-Hydroxyethyl%29Amino%29-6-%28%282%2C5-Disulfophenyl%29Amino%29-1%2C3%2C5-Triazin-2-Yl%29Amino%29Benzenesulfonic Acid% 29 Hexasodium Salt" is the label of a chemical substance. However, its market price range is difficult to determine.
This chemical may be used in specific chemical, scientific research and other fields. If in the world of "Tiangong Kaiwu", although there is no current precise market price comparable, it can be known that its price may vary depending on the use and difficulty of preparation.
In today's world, if its production process is complicated, the raw materials are rare, and it is used in high-end scientific research, special chemical production, etc., the price will be expensive; if it is easier to produce and widely used, the price may be relatively easy. However, I do not have exact market data, but can only guess. The price range may fluctuate due to changes in quality, purity, and market supply and demand, ranging from a few dollars per gram to hundreds of dollars per gram, or even higher. It is difficult to determine the exact number, depending on the market conditions.