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What is Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate]?
This is a chemical substance, and according to its name, it is a rather complex organic compound. Looking at its name, "Tetrasodium" means tetrasodium, indicating that it contains sodium and is in a tetravalent state. "2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate]" section, revealing its complex molecular structure.
Where " (E) -Ethene-1,2-Diyl" indicates that this molecule contains a structural fragment of ethylene, and the configuration is E-type. This ethylene fragment connects complex benzenesulfonate groups on both sides. In the benzenesulfonic acid group, "5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) " This part also contains a triazine ring structure. On the triazine ring, the 4-position is connected with a bis (2-hydroxyethyl) amino group, and the 6-position is connected with a p-sulfonylphenylamino group. This structure endows the compound with unique chemical and physical properties, or because it contains multiple polar groups, it has a certain solubility in water; and because of its complex conjugate structure, or with specific optical and electronic properties, or can be used as a dye, fluorescent material, or has potential uses in some chemical analysis and biological detection fields. However, the exact use depends on its detailed chemical properties and experimental verification.
What are the main uses of Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate]?
This substance is called tetrasodium 2,2 '- (E) -ethylene-1,2-diylbis [5- ({4- [bis (2-hydroxyethyl) amino] -6- [ (4-sulfophenyl) amino] -1,3,5-triazine-2-yl} amino) benzenesulfonate], and it has a wide range of uses.
In the dyeing and weaving industry, it is often used as a dye aid. This substance has excellent dispersion and solubilization ability, which can make the dye evenly dispersed in the dye solution, help it better adhere to the fabric, and then improve the uniformity of dyeing and the brightness of color. Just like many textile printing and dyeing workshops, the use of this additive can make the dyeing effect of cloth better, uniform and long-lasting.
In the field of paper industry, it also has important uses. It can enhance the bonding force between dyes and paper fibers, making paper dyeing more firm. Adding this material when making paper can effectively avoid paper fading and ensure stable color of paper products. Like many paper manufacturing workshops, it can improve the quality of paper products and make the color of paper last forever.
In leather dyeing, it is also indispensable. It can promote the penetration of dyes into the interior of leather fibers to achieve a uniform and firm dyeing effect, making leather products beautiful and durable. For example, in many leather processing places, the quality of leather dyeing is greatly improved with the help of this substance, and the leather products produced are colorful and durable.
What are the physicochemical properties of Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate]?
This compound is called tetrasodium 2,2 '- (E) -ethylene-1,2-diyl bis [5- ({4- [bis (2-hydroxyethyl) amino] -6- [ (4-sulfophenyl) amino] -1,3,5-triazine-2-yl} amino) benzenesulfonate], and its physicochemical properties are complex and unique.
In terms of solubility, due to the structure containing multiple sulfonic acid groups, it has good water solubility and can be well dispersed and dissolved in water. This property makes it advantageous in the application of aqueous systems. For example, in some waterborne coatings or printing and dyeing aids, it can be rapidly dissolved and evenly dispersed to exert its functionality.
In terms of stability, the triazine ring structure within the molecule is relatively stable, endowing the compound with certain thermal and chemical stability. However, functional groups such as amino and hydroxyl groups in the molecule have certain reactivity, and chemical reactions may occur under extreme conditions such as strong acid, strong base or high temperature, which affects its stability. For example, in a strong acid environment, amino groups may protonate, changing the charge distribution and properties of the molecule; long-term placement at high temperature may trigger cross-linking reactions between molecules, resulting in changes in its properties.
From the perspective of surface activity, the compound contains hydrophilic sulfonic acid groups and certain hydrophobic structure parts, which have certain surface activity. This enables it to reduce the surface tension of liquids, with potential applications in emulsion polymerization, detergents, etc., which can promote better mixing of the insoluble oil and water phases to form a stable emulsion system.
In addition, the aromatic ring, amino group and sulfonic acid group in its structure can interact with metal ions or exchange ions, and may play a role in the separation, enrichment or stabilization of some metal ions. For example, it may have application value in the removal of specific metal ions in industrial wastewater treatment.
Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate] What are the precautions during use?
This is a rather complex chemical called tetrasodium 2,2 '- (E) -ethylene-1,2-diylbis [5- ({4- [bis (2-hydroxyethyl) amino] -6- [ (4-sulfophenyl) amino] -1,3,5-triazine-2-yl} amino) benzenesulfonate]. During use, pay attention to the following things:
First, safety protection is essential. Due to its complex chemical structure, or unknown latent risk. Be sure to wear appropriate protective equipment, such as gloves, goggles, etc., to prevent the substance from coming into direct contact with the skin and eyes, causing irritation or other adverse reactions. The operation should be carried out in a well-ventilated place to avoid inhaling its dust or volatiles. If accidentally inhaled, contacted or ingested, appropriate emergency measures should be taken immediately and prompt medical treatment should be taken.
Second, precisely control the dosage. This substance or its unique properties, the dosage has a great impact on the effect. If the dosage is too small, it may not achieve the expected effect; if the dosage is too large, it will not only cause waste, but also may cause negative effects, or change the nature of the reaction system, or affect the follow-up process. Therefore, it is necessary to use precise metering according to specific uses and reaction requirements.
Third, pay attention to its compatibility with other substances. Due to the complex chemical structure, unpredictable reactions may occur when mixed with other chemical substances. Before mixing it with other reagents, solvents, etc., be sure to fully understand the chemical properties of each other, and confirm the compatibility after testing to avoid harmful reactions, such as the generation of toxic gases, severe heat release, etc., endangering the safety of personnel and the environment.
Fourth, storage conditions cannot be ignored. It needs to be stored in a suitable environment according to its chemical properties. Generally speaking, it should be placed in a dry and cool place to avoid moisture, heat and light to prevent it from decomposing and deteriorating, thus affecting the use effect.
What is the method of production of Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate]?
To prepare Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate], the method is as follows:
First take an appropriate amount of raw materials, including benzenesulfonic acid compounds containing specific substituents, reagents with dihydroxy ethylamino groups, triazines containing sulfophenylamino groups, etc., and prepare them in a certain proportion. The reaction is placed in a suitable reactor with an organic solvent as the medium, which should be able to dissolve the reactants well and have no adverse interference with the reaction.
In the initial stage of the reaction, slowly raise the temperature to a specific temperature. This temperature needs to be precisely regulated. If it is too low, the reaction will be slow, and if it is too high, it will cause side reactions. When the temperature is raised, stir the reactants to mix evenly and promote the reaction to proceed fully.
During the reaction process, the reaction phenomenon needs to be closely observed, and the degree of reaction should be monitored by means of chromatographic analysis. When the reaction reaches the expected progress, that is, stop heating and allow the reaction system to cool naturally.
Then, the reaction products are separated and purified. Filtration can be used first to remove insoluble impurities. Then by column chromatography, the product and impurities are effectively separated according to the difference in the distribution coefficient between the stationary phase and the mobile phase.
Finally, the purified product is dried, and the drying temperature and time are controlled to obtain pure and dry Tetrasodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- ({4- [Bis (2-Hydroxyethyl) Amino] -6- [ (4-Sulfonatophenyl) Amino] -1,3,5-Triazin-2-Yl} Amino) Benzenesulfonate] product. The whole process requires fine operation and strict control of each step to produce qualified products.