Products

1,5-Naphthalenedisulfonic Acid, 3-(2-(4-((4,6-Dichloro-1,3,5-Triazin-2-Yl)Amino)-2-Methylphenyl)Diazenyl)-, Sodium Salt (1:2)

Lingxian Chemical

Specifications

HS Code

252284

Chemical Name 1,5-Naphthalenedisulfonic Acid, 3-(2-(4-((4,6-Dichloro-1,3,5-Triazin-2-Yl)Amino)-2-Methylphenyl)Diazenyl)-, Sodium Salt (1:2)
Molecular Formula C20H13Cl2N5Na2O6S2
Molecular Weight 600.36 g/mol
Appearance Solid (usually)
Solubility Soluble in water (due to sodium salt form)
Color Typically colored, color depends on impurities and form
Odor Odorless or very faint odor
Ph Affected by its salt form, likely basic in solution
Stability Stable under normal conditions, but sensitive to strong acids and bases
Storage Condition Store in a cool, dry place away from heat and moisture
Packing & Storage
Packing 250 - gram pack of 1,5 - Naphthalenedisulfonic Acid sodium salt chemical.
Storage 1,5 - Naphthalenedisulfonic acid, 3 - (2 - (4 - ((4,6 - Dichloro - 1,3,5 - triazin - 2 - yl)amino) - 2 - methylphenyl)diazenyl) -, disodium salt should be stored in a cool, dry place away from heat sources and direct sunlight. Keep it in a tightly - sealed container to prevent moisture absorption and degradation. Avoid storage near incompatible materials as it is a chemical compound that may react.
Shipping 1,5 - Naphthalenedisulfonic acid derivative sodium salt (1:2) should be shipped in properly sealed, corrosion - resistant containers. Ensure compliance with hazardous chemical shipping regulations, keeping it away from heat and incompatible substances.
Free Quote

For samples, pricing, or more information, please call us at +8615651039172 or mail to info@bouling-chem.com.

We will respond to you as soon as possible.

Tel: +8615651039172

Email: info@bouling-chem.com

1,5-Naphthalenedisulfonic Acid, 3-(2-(4-((4,6-Dichloro-1,3,5-Triazin-2-Yl)Amino)-2-Methylphenyl)Diazenyl)-, Sodium Salt (1:2)
General Information
Historical Development
1,5-Naphthalenedisulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2) This compound traces its historical development, which is really impressive. In the past, chemical researchers have made unremitting explorations and gradually touched on this substance in the study of various types of compounds. At first, its understanding was still shallow, and only some of its characteristics were known. However, with the passage of time, various experiments have advanced, and the understanding of its structure and properties has gradually deepened. From ignorance and ignorance to clear mastery, countless chemists have worked hard during this period, and through repeated experiments and demonstrations, it has gradually emerged in the field of chemistry, emerged in related research and applications, and finally became an existence that cannot be ignored in today's chemical development process.
Product Overview
Today, there is a substance called 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) azo) -, sodium salt (1:2). This is the object of chemical research. Its morphology is related to many scientific studies. This substance has its own uniqueness in the field of chemistry. Looking at its composition, the atomic groups are ingeniously combined, and the various parts interact. The morphology of its sodium salt may affect its physical and chemical properties. When experimentally exploring, it is necessary to investigate its reaction phenomena and conditions in detail. The study of this object is expected to open up a new era of chemical cognition, provide assistance and opportunities for the development of related fields, and explore its more potential uses and values.
Physical & Chemical Properties
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2) This substance is related to its physical and chemical properties, which is an important content of chemical research. This compound has a unique structure and contains various groups such as naphthalene ring, sulfonic acid group, azo group. In terms of physical properties, it may have a specific color, taste and state, and its solubility in different solvents is different. As for chemical properties, it may easily participate in coupling and substitution reactions due to its active nitrogen and nitrogen double bonds. Under light, heat and other conditions, stability is also the key to consider. Exploring the physical and chemical properties of this material can lay a solid foundation for its application in chemical, materials and other fields, and help a lot.
Technical Specifications & Labeling
Today there is a product named 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2). In this product, process specifications and identification (product parameters) are the key.
Looking at its process specifications, it needs to be synthesized according to a precise method. Each step of the reaction conditions must be strictly controlled, such as temperature, pressure, reactant ratio, etc. A slight difference in the pool will affect the purity and yield of the product. In terms of identification (product parameters), its chemical structure, purity standards, physical properties, etc. should be detailed so that users can clarify its characteristics and apply it to various scenarios. Strictly abide by process specifications and identification (product parameters) to ensure the quality of this product and play its due role in the chemical industry.
Preparation Method
The 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -sodium salt (1:2) of this 1,5-naphthalene disulfonic acid needs to be studied in detail, which is related to the raw materials and production process, reaction steps and catalytic mechanism.
To make this product, the raw materials are 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) azo) and so on. As for the process, in a specific reactor, the temperature and pressure are controlled, the raw materials are fed in sequence, and the reaction is stirred to promote the reaction. The reaction steps are rigorous. First, a certain two substances are mixed to initiate the initial reaction, and then other agents are added to advance. The catalytic mechanism is also critical. The catalyst is selected to reduce the reaction energy barrier, increase the rate and yield. In this way, high-quality products can be obtained.
Chemical Reactions & Modifications
A chemical compound, called 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) diazo) -, (1:2), its anti-modification is very important. I am a chemical researcher, to investigate this secret.
Its reaction is the reaction of molecular interactions. Under different conditions, this compound or other compounds are biochemically combined and reacted. The purpose of modification is to improve its properties. Or increase its characterization, so that it can last for a long time in different environments; or change its solubility, so that it can be effective in multi-solubility.
To explore the chemical modification of this compound, such as exploring unknown territories, it is hoped that it can be added to the field and provide building blocks for multiple uses.
Synonyms & Product Names
In today's world, the industry of chemistry is flourishing day by day, and new things are coming out frequently. There is a thing called 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2). This substance is also used in the field of chemical industry, or has a unique use.
To find its synonymous name and the name of the commodity, or it can be found in ancient books and records. Those who have synonymous names, so they refer to one thing by different names, so that scholars know their different names, which is convenient for reference. The term commodity is related to the easy circulation of the city, used by merchants, and other things of the same kind.
To understand the name of this thing and the name of the commodity, you should read the classics of the chemical industry and visit the comments of various families. Or there are ancient sages, already remembered, or in the new works of the current world, there are also. In this way, you can get the name of this thing synonymous with the name of the commodity, so as to clarify its details and make up for the research of chemistry.
Safety & Operational Standards
1,5-Naphthalenedisulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2), this chemical is essential for safety and operating practices.
Today describes its safety and handling in detail. This product needs to be strictly followed in the experimental or production environment. For storage, it must be placed in a cool, dry and well-ventilated place, away from fire and heat sources, to prevent accidents. Due to its chemical properties, it should be stored in isolation from oxidants, acids and other substances, and must not be mixed to avoid chemical reactions and endanger safety.
When operating, the operator must wear appropriate protective equipment. Protective glasses must be able to effectively block substances that may splash to ensure eye safety; protective gloves must be made to resist the erosion of the substance and avoid skin contact. And the operation should be carried out in a fume hood to ensure air circulation and reduce the accumulation of harmful gases. If you accidentally come into contact with the skin, you should immediately rinse with a large amount of flowing water, and then seek medical treatment; if you splash into the eyes, you need to rinse with a large amount of water immediately and seek medical attention quickly.
Furthermore, during use, the dosage and reaction conditions need to be precisely controlled. Operate strictly according to the established process and cannot be changed without authorization. Every step is related to the success or failure of the experiment and the safety of personnel, and must not be taken lightly. Only by strictly observing safety and operating standards can we ensure the safety of personnel and the smooth progress of the experiment or production.
Application Area
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2) This material is quite important in the field of use. In the past, various craftsmen and bachelors explored its properties, hoping to get a good use of it.
This agent is used in the dyeing and weaving industry, showing great power. It can make the color of the fabric bright and firm, and it will not fade or darken over time. In addition to the art of paper making, it is also wonderfully useful, which can help the paper color be uniform, of high quality and beauty. As for the preparation of pigments, it is also indispensable, giving pigments a good color and lasting.
Looking at its achievements, it is helpful in all kinds of industries. Although the years have passed, the importance of its use in various industries has not been slightly reduced. Bachelor of Engineering, always in the state of refinement, research its new uses, hope to expand its use, and contribute to the progress of the world.
Research & Development
A chemical has been developed, which is called 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) azo) -, sodium salt (1:2). I have devoted myself to the properties of this product, the method of preparation, and the way it is used.
Explore its properties, and know that it dissolves and is stable in different media. Study its system, try various methods, and seek efficient and pure products. As for the way to use it, think about dyeing, medicine, etc., there may be something to do.
Although the research process has encountered various problems, I will uphold my perseverance and make unremitting explorations. I hope to make progress in the research and development of this product, and contribute to the prosperity of the industry.
Toxicity Research
Toxicology of 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) - 2-methylphenyl) azo) -, sodium salt (1:2). The structure of this compound is unique, and the molecule contains naphthalene ring, triazine ring and other groups. After careful experiments, it has a significant impact on the physiological function of the tested organisms at specific doses. Or cause cell metabolic disorders and abnormal biochemical indicators. Observing its mechanism of action seems to be related to interfering with the activity of key enzymes in organisms. However, in order to clarify the full picture of its toxicology, it is necessary to collect samples, set up more variables, and repeatedly explore with rigorous methods in order to obtain accurate conclusions, so as to determine its potential harm to the ecological environment and biological health, and provide a solid basis for protection and treatment.
Future Prospects
Today there is a thing called 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) azo) -, sodium salt (1:2). As a chemical researcher, I look at this substance and think about its future prospects. This substance may be useful in many fields of chemical industry. Although the current understanding is still shallow, the scientific way is to explore. With time, if we can study its characteristics in depth, it may be able to reveal its edge in material improvement and pharmaceutical development, and seek well-being for future generations. Hoping that future scholars will not be afraid of difficulties and devote themselves to research, so that the potential of this object can be fully developed and used by the world to open a new chapter in the future.
Frequently Asked Questions
What is the chemical structure of this 1,5-naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) diazo) -, sodium salt (1:2)
This is a question about the chemical structure. The substances involved are 1,5-naphthalic acid, 3- (2- (4- ((4,6-dioxy-1,3,5-triazine-2-yl) oxy) -2-ethylphenyl) diazo) -, cobalt phthalocyanine (1:2).
To clarify its chemical structure, it should be analyzed according to the rules and nomenclature of organic chemistry. 1,5-naphthalic acid is a compound with carboxyl groups attached to the naphthalene ring at the 1st and 5th positions. The naphthalene ring has a fused biphenyl ring structure. This diacid group affects its chemical activity and properties.
And 3- (2- (4- ((4,6 -dioxy-1,3,5 -triazine-2-yl) oxy) -2 -ethylphenyl) diazo) -part, containing complex substituents. From the outside to the inside, the diazo group is attached to a specific phenyl group, and the phenyl group has an ethyl basic group and a substituted oxygen group containing a triazine ring. The 4,6 position of the triazine ring is an oxygen group, and the 2 position is an oxygen group. This structure affects the overall electron cloud distribution and reactivity.
Cobalt phthalocyanine (1:2), phthalocyanine is a cyclic compound with a large conjugated system, and the center can coordinate metal ions. Here, cobalt ions coordinate with phthalocyanine in a 1:2 ratio to form a stable complex, and its conjugated structure gives the substance unique optical and electrical properties.
This compound has a complex chemical structure and the interaction of various parts, giving it unique physical and chemical properties. It may have important applications in materials science, catalysis and other fields.
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) diazo) -, What are the main uses of sodium salts (1:2)
1% 2C5-thiadiazole acid, 3- (2- (4- ((4,6-dihydroxy-1,3,5-triazine-2-yl) oxy) - 2-methylphenyl) diazo) -, copper oxime (1:2), has a wide range of uses. In the pharmaceutical industry, this compound can be used as a key intermediate to help create specific drugs. Due to its special chemical structure, it can interact with specific biomolecules, potentially in the treatment of diseases, or can develop novel therapies for certain difficult diseases.
In the field of materials science, it also has extraordinary performance. It can participate in the synthesis of polymer materials, and through chemical modification, give the material unique properties, such as enhancing the stability of the material, improving its optical properties, etc., and then expand the application of the material in many fields such as electronic devices and optical instruments.
In the field of agriculture, it can also show its skills. Or it can be developed as a new type of pesticide or plant growth regulator, which can inhibit or kill specific pests and diseases by virtue of its structural characteristics, and has the function of regulating plant growth, which helps to improve the yield and quality of crops, and contributes to the sustainable development of agriculture. This is the main use of 1% 2C5-thiadiazole acid, 3- (2- (4- ((4,6-dihydroxy-1,3,5-triazine-2-yl) oxy) -2-methylphenyl) diazo) -, copper oxime (1:2).
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) diazo) -, sodium salt (1:2) What are the precautions during use
1% 2C5-thiadiazole, 3- (2- (4- ((4,6-difluoro-1,3,5-triazine-2-yl) oxy) - 2-methylphenyl) diazo) -, copper oxime (1:2) are complex compounds in the chemical field. When using, be sure to pay attention to the following things:
First, safety protection is the key. This compound may be toxic, irritating, or flammable and explosive. When taking it, wear appropriate protective equipment, such as protective gloves, goggles, gas masks, etc., to avoid contact with the skin, eyes, and respiratory tract. The operation should be carried out in a well-ventilated place or in a fume hood to prevent the accumulation of harmful gases.
Second, strictly follow the operating procedures. Before use, read the relevant technical documents and safety instructions carefully, and be familiar with their physical and chemical properties, reaction characteristics and usage methods. According to the specified process, precisely control the dosage, reaction conditions (temperature, pressure, time, etc.) to prevent the reaction from getting out of control or causing accidents.
Third, properly manage storage. According to its characteristics, choose suitable storage conditions. Generally speaking, it should be stored in a cool, dry and ventilated place, away from fire, heat and oxidants. Some compounds are sensitive to light and need to be stored away from light. Different substances are stored separately to prevent mutual reaction.
Fourth, prepare for emergency response. In the experimental or use site, prepare emergency treatment equipment and medicines, such as fire extinguishers, eye washers, first aid kits, etc. In the event of leakage, fire, personnel poisoning and other accidents, immediately activate emergency plans, take effective measures to reduce losses and hazards, and report to relevant departments in a timely manner.
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) diazo) -, What are the physical and chemical properties of sodium salts (1:2)
1% 2C5-thiadiazole acid, 3- (2- (4- ((4,6-dioxy-1,3,5-triazine-2-yl) oxy) - 2-ethylphenyl) diazo) -, cobalt oxime (1:2) are extremely complex chemicals. Among them, 1% 2C5-thiadiazole acid contains the structure of thiadiazole, which may exhibit unique chemical activity in many chemical reactions, or has certain acidic characteristics, can participate in acid-base related reactions, and its thiadiazole structure may affect the stability and reaction selectivity of molecules.
3- (2- (4- ((4,6-dioxy-1,3,5-triazine-2-yl) oxy) -2-ethylphenyl) diazo) moiety, diazo group is active in nature, often used in organic synthesis as a key intermediate, can occur a variety of coupling reactions, greatly expand the structural diversity of molecules. And 4,6-dioxy-1,3,5-triazine-2-based structure, or endow molecules with specific electronic effects and steric resistance, affecting the overall chemical behavior.
As for cobalt oxime (1:2), cobalt is a transition metal element, and the complexes formed with oxime often have unique physical and chemical properties. In terms of physical properties, it may exhibit a specific color, and it may have certain magnetic characteristics due to metal-ligand interactions. In terms of chemical properties, cobalt oxime complexes may catalyze certain chemical reactions. By changing the valence state of cobalt ions, they participate in the electron transfer process and exhibit redox activity, which may have potential applications in fields such as organic synthesis catalysis and electrocatalysis.
This complex chemical substance may exhibit rich and unique physical and chemical properties due to the synergistic effect of its various parts, and may hold potential research and application value in many fields such as materials science and medicinal chemistry.
1,5-Naphthalene disulfonic acid, 3- (2- (4- ((4,6-dichloro-1,3,5-triazine-2-yl) amino) -2-methylphenyl) diazo) -, sodium salts (1:2) Whether there is an environmental risk
Wuguan Ru said "1% 2C5-thiadiazole acid, 3- (2- (4- ((4,6-difluoro-1,3,5-triazine-2-yl) oxy) -2-methylphenyl) diazo) -, cobalt oxime (1:2) " This substance is dangerous in the environment.
Organic compounds containing complex groups such as fluorine and nitrogen have many unique chemical properties. For example, fluorine atoms have strong electronegativity, which can greatly increase molecular stability and is difficult to degrade in the environment. The fluorine element in this compound may cause it to remain in the natural environment for a long time and gradually accumulate.
And diazo-based, with high reactivity, or in the environment to trigger a series of chemical reactions, affecting the surrounding chemical balance. Although cobalt oxime (1:2) may regulate some of its properties, but cobalt itself is also a heavy metal, if it is released in the environment, or cause water and soil pollution, endangering organisms.
And such complex organic compounds are often difficult to be decomposed and metabolized by microorganisms, or transmitted and enriched in the food chain, threatening organisms at all levels of the ecosystem. Therefore, from a comprehensive perspective, this material may pose an environmental risk.