As a leading Disodium 2-Amino-5-[(E)-(4-Amino-3-Sulfonatophenyl)(4-Iminio-3-Sulfonatocyclohexa-2,5-Dien-1-Ylidene)Methyl]-3-Methylbenzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.
2-Amino-5- [ (E) - (4-amino-3-sulfonatophenyl) (4-iminio-3-sulfonatocyclohexa-2, 5-dien-1-ylidene) methyl] -3-methylbenzenesulfonate What is the chemical structure of the disodium salt
Ugh! This is the chemical structure of 2-amino-5- [ (E) - (4-amino-3-sulfophenyl) (4-imino-3-sulfo-2,5-cyclohexadiene-1-subunit) methyl] - 3-methylbenzenesulfonate disodium salt.
Looking at its name, each part can be analyzed first. " 2-Amino ", indicating that the 2 positions on the benzene ring are connected with amino groups;" 5- [ (E) - (4-amino-3-sulfophenyl) (4-imino-3-sulfo- 2,5-cyclohexadiene-1-subunit) methyl] ", in this long chain structure, (E) phenotype, (4-amino-3-sulfophenyl) and (4-imino-3-sulfo- 2,5-cyclohexadiene-1-subunit) are connected by methylene, And this structure is attached to the 5 position of the benzene ring; "3-methyl" means that the 3 position of the benzene ring has methyl groups.
As for "disodium benzenesulfonate", it means that the compound is derived from benzenesulfonic acid, and the hydrogen of the sulfonic acid group is replaced by two sodium ions.
Synthetically, its chemical structure is based on benzene ring, 2-position amino group, 3-position methyl group, 5-position complex side chain, and the whole is in the state of disodium salt. In this structure, the groups interact with each other, resulting in its unique chemical properties.
2-Amino-5- [ (E) - (4-amino-3-sulfonatophenyl) (4-iminio-3-sulfonatocyclohexa-2, 5-dien-1-ylidene) methyl] -3-methylbenzenesulfonate What are the main uses of disodium salts
2-Amino-5- [ (E) - (4-amino-3-sulfonylphenyl) (4-imino-3-sulfonylcyclohexyl-2,5-diene-1-subunit) methyl] -3-methylbenzene sulfonate disodium salt, which is widely used.
In the field of printing and dyeing, it can be used as an excellent dye. Due to its unique molecular structure, it can be closely linked with fabric fibers, making the dyeing effect bright and lasting, not easy to fade, and is very popular in the textile printing and dyeing industry, helping fabrics to show colorful colors.
In the field of biochemical research, it may be used as a biochemical reagent. With its specific chemical properties, it is used to label and track biomacromolecules, enabling researchers to gain insight into the chemical reactions and molecular interactions in living organisms, providing a key tool for life science research.
It also has potential uses in the field of medicine and chemical industry. It can also be used as an intermediate in drug synthesis. After further chemical modification and reaction, drugs with specific pharmacological activities can be prepared, contributing to the cause of human health.
Furthermore, in the field of materials science, it may be able to participate in the preparation of functional materials. By combining with other materials, it gives materials such as special optical and electrical properties, broadens the application scope of materials, and promotes the continuous development of materials science.
This compound plays an important role in many fields due to its diverse characteristics and cannot be ignored.
2-Amino-5- [ (E) - (4-amino-3-sulfonatophenyl) (4-iminio-3-sulfonatocyclohexa-2, 5-dien-1-ylidene) methyl] -3-methylbenzenesulfonate What are the precautions in the use of disodium salt
2-Amino-5- [ (E) - (4-amino-3-sulfophenyl) (4-imino-3-sulfocyclohexyl-2,5-diene-1-subunit) methyl] -3-methylbenzene sulfonate disodium salt, this is a rather complex chemical agent. During use, many matters need special attention.
First, it concerns storage conditions. Because of its chemical properties or relatively active, it should be placed in a dry, cool and well-ventilated place. If the storage environment is humid and warm, it may cause the agent to be damp and deteriorate, affecting its chemical structure and performance.
Second, it involves taking the dose. This agent must have specific dosage requirements. Excessive use or adverse reactions may occur, and insufficient dosage will be difficult to achieve the desired effect. When taking it, be sure to measure it with a precise measuring tool to ensure that the dose is accurate.
Third, about the operating environment. The operation site needs to be kept clean and avoid random mixing with other chemicals. Due to its complex structure, it encounters with certain substances, or unpredictable chemical reactions occur, or harmful products are generated, or the drug fails.
Fourth, for protective measures. Users should wear appropriate protective equipment, such as gloves, goggles, etc. This medicine may be irritating to the skin and eyes, and good protection can ensure personal safety.
Fifth, post-use treatment cannot be ignored. After use, the remaining medicine and related waste must not be discarded at will, and must be properly disposed of in accordance with specific environmental protection regulations to prevent pollution to the environment. In this way, the process of using this medicine can be smooth and safe, and many unnecessary troubles can be avoided.
2-Amino-5- [ (E) - (4-amino-3-sulfonatophenyl) (4-iminio-3-sulfonatocyclohexa-2, 5-dien-1-ylidene) methyl] -3-methylbenzenesulfonate How stable is the disodium salt?
2-Amino-5- [ (E) - (4-amino-3-sulfophenyl) (4-imino-3-sulfocyclohexyl-2,5-diene-1-subunit) methyl] - 3 -methylbenzene sulfonate disodium salt, this is the name of the chemical substance. The study of its stability is related to many elements.
Looking at its structure, it contains multiple sulfonate groups and amino groups. Sulfonate groups can give it a certain water solubility, and this water solubility has an important impact on stability. After being dissolved in water, its ionic state can interact with ions in the surrounding environment. If there are ions in the environment that can react with it, it may affect its stability.
Furthermore, there is a conjugated system in its structure, and the conjugated system usually enhances molecular stability. However, in case of extreme conditions such as strong light and high temperature, the conjugated system may be damaged, resulting in reduced stability.
From a chemical reaction point of view, amino groups have a certain alkalinity and can react with acids. If the environment is acidic, amino groups or protonated, which in turn affects the structure and stability of the entire molecule. At the same time, sulfonate groups are relatively stable, but in the presence of strong acids, strong bases or specific catalysts, reactions may occur, resulting in changes in stability.
For storage, it should be placed in a cool, dry place, protected from strong light and high temperature. In this way, it can maintain good stability for a certain period of time and delay the process of decomposition or deterioration due to environmental factors. However, its specific stability still needs to be accurately determined by experiments, taking into account changes under different temperature, humidity, light and other conditions, in order to determine the full picture of its stability.
2-Amino-5- [ (E) - (4-amino-3-sulfonatophenyl) (4-iminio-3-sulfonatocyclohexa-2, 5-dien-1-ylidene) methyl] -3-methylbenzenesulfonate Whether there is a safety hazard of disodium salt
2-Amino-5- [ (E) - (4-amino-3-sulfophenyl) (4-imino-3-sulfo-2,5-cyclohexadiene-1-mylomethyl) ] - 3-methylbenzene sulfonate disodium salt, this is a rather complex chemical substance. As for whether it has potential safety hazards, it needs to be explored in detail from many aspects.
The safety of chemical substances depends on their chemical properties. This compound contains many special functional groups, such as amino groups, sulfonate groups, etc. Amino groups are alkaline to a certain extent, or can react with other substances. Sulfonate groups are often hydrophilic, or affect their behavior in different environments. However, only according to their structure, it is difficult to determine their exact reactivity and potential harm.
Second inspection of its use. If used in industrial production, during the production process, or due to improper operation, it leaks, comes into contact with the human body or the environment, causing adverse consequences. If used in the field of medicine, it can only be used after strict pharmacological and toxicological studies, and meets relevant standards. It is safe or guaranteed.
Review its environmental impact. Discharge into the environment, or due to its own characteristics, migrate and transform in water bodies and soils, affecting ecosystems. Such as changing the pH of the soil, affecting the activity of microorganisms, or toxic to aquatic organisms.
And the route of human contact is also critical. Inhalation through the respiratory tract, or irritation of respiratory mucosa; skin contact, or allergic skin reactions; oral ingestion, or damage to the digestive system.
In summary, only the name structure is known, and it is difficult to determine whether it has potential safety hazards. Professional experimental research is required to consider its chemical properties, uses, environmental impact and human contact routes and many other factors before a conclusion can be reached.