Competitive Disodium 2-Amino-5-{(Z)-(4-Amino-3-Sulfophenyl)[(4E)-4-Imino-3-Methyl-5-Sulfonatocyclohexa-2,5-Dien-1-Ylidene]Methyl}Benzenesulfonate prices that fit your budget—flexible terms and customized quotes for every order.
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As a leading Disodium 2-Amino-5-{(Z)-(4-Amino-3-Sulfophenyl)[(4E)-4-Imino-3-Methyl-5-Sulfonatocyclohexa-2,5-Dien-1-Ylidene]Methyl}Benzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
Disodium 2-Amino-5- { (Z) - (4-Amino-3-Sulfophenyl) [ (4E) -4-Imino-3-Methyl-5-Sulfonatocyclohexa-2, 5-Dien-1-Ylidene] Methyl} What are the common uses of Benzenesulfonate
"Tiangong Kaiwu" describes things in simple and simple language. This "Disodium + 2 - Amino - 5 - { (Z) - (4 - Amino - 3 - Sulfophenyl) [ (4E) - 4 - Imino - 3 - Methyl - 5 - Sulfonatocyclohexa - 2,5 - Dien - 1 - Ylidene] Methyl} Benzenesulfonate" is widely used.
In the printing and dyeing industry, it is often used as a dye aid. It can help dye level dyeing, so that the fabric color is uniform, without the risk of uneven depth. It can improve the affinity between dyes and fabrics, promote dye adsorption, fixation on fibers, improve dyeing fastness, and is not easy to fade after washing and sun exposure.
In the field of chemical synthesis, it is an important intermediate. It can participate in many organic synthesis reactions, and by virtue of its structural characteristics, introduce specific functional groups to build complex organic molecular structures, laying the foundation for the preparation of new materials, drugs, etc.
In the paper industry, it is also used. It can adjust the properties of paper, such as enhancing the strength of paper, making the paper resistant to folding and wear, and is helpful to the whiteness and gloss of paper, which can optimize the appearance and quality of paper products.
In scientific research experiments, it is used as a chemical reagent for researchers to explore chemical reaction mechanisms and test material properties. Due to its unique chemical structure and properties, it offers a variety of research directions and possibilities for scientific research.
Disodium 2-Amino-5- { (Z) - (4-Amino-3-Sulfophenyl) [ (4E) -4-Imino-3-Methyl-5-Sulfonatocyclohexa-2, 5-Dien-1-Ylidene] Methyl} What is the main ingredient of Benzenesulfonate
This is the name of the chemical compound, and its main components are as follows:
The name of this compound is "di- 2-amino-5- { (Z) - (4-amino-3-sulfonic acid phenyl) [ (4E) -4-amino-3-methyl-5-sulfonic acid-hexyl-2,5-diene-1-yl] methyl-benzene sulfonic acid". The name of the anatomy, its main frame is benzene sulfonic acid, and there are di- as a sub-part. There is an amino group at the 2nd position of the benzene group, and a substituent at the 5th position.
This substituent contains a (Z) type of phenyl (4-amino-3-sulfonic acid phenyl), and this phenyl group contains an amino group, a methyl group, and a sulfonic acid group. The main component of this compound is a benzene sulfonic acid group, which is modified from a polyfunctional group to form its characteristic group. Each part of the functional group is influenced by each other, which gives this compound specific chemical properties and anti-activity.
Disodium 2-Amino-5- { (Z) - (4-Amino-3-Sulfophenyl) [ (4E) -4-Imino-3-Methyl-5-Sulfonatocyclohexa-2, 5-Dien-1-Ylidene] Methyl} In which industries is Benzenesulfonate used?
Disodium + 2 - Amino - 5 - { (Z) - (4 - Amino - 3 - Sulfophenyl) [ (4E) - 4 - Imino - 3 - Methyl - 5 - Sulfonatocyclohexa - 2,5 - Dien - 1 - Ylidene] Methyl} Benzenesulfonate is a complex chemical substance that has important applications in many industrial fields.
In the printing and dyeing industry, this substance is often used as a reactive dye. Due to its unique chemical structure, it can chemically react with fabric fibers to form a covalent bond. This makes the dyeing effect extremely strong. After many washes and rubbing, the fabric remains bright and does not fade easily. When dyeing natural fiber fabrics such as cotton and linen, it can give rich colors to the fabric and meet the market demand for diverse colors of textiles.
The paper industry is also indispensable. As a paper dye, it can make paper show a uniform and bright color. With good water solubility and affinity for fibers, it can be evenly dispersed among fibers during the papermaking process to achieve effective dyeing, improve the visual quality of paper, and meet the color requirements of paper in different fields such as packaging and printing.
In leather manufacturing, this substance can act as a leather dyeing aid. The dye helps to better penetrate and fix in the leather fibers, so that the leather is dyed evenly and has the characteristics of light resistance and water resistance. After its treatment, the leather color is full and long-lasting, improving the quality and aesthetics of leather products. In addition, in the production of some specialty chemicals, it participates in the reaction as an intermediate, providing a basis for the synthesis of more complex and specific functional chemicals through its special structure and activity, and promoting the development of the fine chemical industry.
How safe is Disodium 2-Amino-5- { (Z) - (4-Amino-3-Sulfophenyl) [ (4E) -4-Imino-3-Methyl-5-Sulfonatocyclohexa-2, 5-Dien-1-Ylidene] Methyl} Benzenesulfonate
This is about the safety of "disodium 2-amino-5- { (Z) - (4-amino-3-sulfophenyl) [ (4E) -4-imino-3-methyl-5-sulfocyclohex- 2,5-diene-1-subunit] methyl} benzenesulfonate". The safety of this substance requires detailed investigation of many factors.
To observe its chemical structure, it contains many complex groups. The characteristics of amino groups, sulfogroups and other groups have a great impact on their chemical activity and reactivity. Amino groups have certain alkalinity, or participate in chemical reactions and interact with other substances; sulfonyl groups increase their water solubility, but they may also change molecular polarity and charge distribution, and exhibit different chemical behaviors in different environments.
In terms of toxicity, there is no clear conclusion like that of conclusive ancient books. However, by analogy with chemicals with similar structures, one or two can be glimpsed. If some groups in the structure are similar to known toxic and harmful substances, there may be potential toxicity risks. But it is difficult to infer accurately based on the structure alone.
At the level of environmental impact, its water solubility may cause it to be widely distributed in water bodies. If it enters the natural environment or reacts with other substances in water, it will affect water quality and aquatic organisms. Its decomposition products also need to be considered, or have long-term effects on the ecosystem.
As for the risk of human exposure, if this substance is used in industrial production or specific products, workers or consumers may be exposed. After entering the human body through respiratory inhalation, skin contact or oral ingestion, or reacting with biomolecules in the body, it interferes with normal physiological functions.
Overall, although there is no complete conclusion to determine its absolute safety, from the perspective of chemical structure, analogs, environment and human exposure, the study of the safety of this substance still needs to be deeply explored and multi-faceted research can be obtained to ensure the safety of people and the environment.
What are the storage conditions for Disodium 2-Amino-5- { (Z) - (4-Amino-3-Sulfophenyl) [ (4E) -4-Imino-3-Methyl-5-Sulfonatocyclohexa-2, 5-Dien-1-Ylidene] Methyl} Benzenesulfonate?
This is a chemical substance named disodium 2-amino-5- { (Z) - (4-amino-3-sulfophenyl) [ (4E) - 4-imino-3-methyl-5-sulfocyclohex- 2,5-diene-1-subunit] methyl} benzenesulfonate. Its storage conditions should be carefully.
Bear the brunt of it and should be placed in a cool place. This substance is afraid of heat. If it is exposed to high temperatures, its structure may change, its chemical properties may be unstable, or it may become metamorphic. A cool place can keep its physical properties constant.
Furthermore, a dry environment is indispensable. Moisture is easy to interact with the substance, or cause moisture decomposition, or cause chemical reactions, damaging its purity and quality. Therefore, it must be placed in a dry place to avoid humid gas.
and should be sealed and stored. Open and exposed, it is easy to come into contact with various components in the air, such as oxygen, carbon dioxide, etc., causing oxidation, carbonation and other reactions. A sealed device can prevent external interference and protect its chemical properties.
In addition, the storage place should be away from fire and heat sources. This substance may be flammable, or react violently when heated, and the fire source is close to the heat source, which is prone to danger and endangers safety.
needs to be stored separately from oxidizing agents, acids, bases, etc. This substance is chemically active, coexists with various chemicals, and is prone to chemical reactions, so it must be classified and stored to prevent interaction.
It is also important to store it in an appropriate container. Choose a material container that does not react with the substance, such as glass, specific plastics, etc., to maintain its chemical stability.