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Benzenesulfonic Acid, 2,2'-(1,2-Ethenediyl)Bis(5-((4-(Ethylamino)-6-(Phenylamino)-1,3,5- -Triazin-2-Yl)Amino)-, Disodium Salt

Lingxian Chemical

Specifications

HS Code

981254

Chemical Formula C38H34N10Na2O6S2
Molar Mass 824.84 g/mol
Appearance Typically a solid (color may vary depending on purity)
Solubility In Water Soluble (due to disodium salt nature)
Ph In Aqueous Solution Alkaline (as it is a disodium salt)
Stability Stable under normal conditions but may react with strong oxidizing agents
Odor Odorless or faint odor
Packing & Storage
Packing 250 - gram package of disodium salt of 2,2'-(ethene - 2,1 - diyl)bis(5 - [(4 - ethylamino - 6 - phenylamino - 1,3,5 - triazin - 2 - yl)amino]benzenesulfonic acid).
Storage Store "Benzenesulfonic Acid, 2,2'-(1,2-Ethenediyl)Bis(5-((4-(Ethylamino)-6-(Phenylamino)-1,3,5 -Triazin-2-Yl)Amino)-, Disodium Salt" in a cool, dry place away from direct sunlight and heat sources. Keep the container tightly sealed to prevent moisture absorption and contamination. Avoid storage near reactive chemicals.
Shipping The chemical, Benzenesulfonic Acid derivative disodium salt, is shipped in suitable, tightly - sealed containers. Packaging adheres to chemical transport safety standards to prevent spills, ensuring safe transit and storage.
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Benzenesulfonic Acid, 2,2'-(1,2-Ethenediyl)Bis(5-((4-(Ethylamino)-6-(Phenylamino)-1,3,5- -Triazin-2-Yl)Amino)-, Disodium Salt
General Information
Historical Development
Benzenesulfonic acid compounds, 2,2 '- (1,2-ethylenediyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino) -, disodium salts, the development of their substances has a long history. In the past, many chemists dedicated themselves to the field of organic synthesis and continued to explore. At first, only a glimpse of such compounds was known. After years, scholars repeatedly experimented and improved the production method. From the selection of raw materials to the precise regulation of reaction conditions, they have all strived for excellence. With the evolution of science and technology, the understanding of its structure and properties has deepened and its application has become wider. From the original novel products in the laboratory to today's emergence in many fields, such as dyes, medicine and other industries, this compound has been baptized by history and has eventually become a shining pearl in the chemical treasure house, making remarkable contributions to human development.
Product Overview
This product is named 2,2 '- (1,2-ethylene diyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino) benzenesulfonate disodium salt. It is a sulfonate compound with a molecular structure containing triazine ring, benzene ring and sulfonic acid group. In the chemical industry, or used in the preparation of dyes, pigments and other related products, because the triazine structure can provide good color properties, the benzene ring gives it a certain stability, and the sulfonic acid group can enhance its water solubility and dispersion, so that the product plays a unique role in related applications and helps to improve the color effect and stability of the product.
Physical & Chemical Properties
Today there is a thing called "Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5-Triazin-2-Yl) Amino) -, Disodium Salt". Its physical and chemical properties are quite critical. From the perspective of physical properties, it may have a specific color, state, or a certain melting point and solubility. Chemically, its structure contains specific groups, or it can react with certain substances. This substance contains benzenesulfonic acid groups, triazine groups, etc., or can participate in substitution, addition and other reactions. In the field of chemical research, exploring its physical and chemical properties can clarify its reaction laws, and may provide assistance and guidance for the creation of new materials and the optimization of chemical reactions, thus promoting the development and application of chemistry.
Technical Specifications & Labeling
Guanfu Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5 - Triazin-2-Yl) Amino) -, Disodium Salt This product, its technical specifications and identification (commodity parameters) are the most critical. To clarify its details, follow the ancient method and observe its quality.
Its quality is also related to various elements. In terms of its chemical composition, the orderly combination of each group is the basis for technical specifications. The wonder of molecular structure determines its physical and chemical properties, such as solubility and stability, which need to be accurately determined for normative criteria. On the label, the proportion of each ingredient should be detailed, which is the key to the product parameters.
Furthermore, the production process is related to the quality of the product. From the selection of raw materials to the control of the reaction, it is necessary to follow the regulations. Temperature, pressure and other conditions, there is a slight difference, or the quality changes. In the logo, the main points of the production process should also be clearly stated, so that the user knows the details. This technical specification and the logo (commodity parameters) complement each other. In this way, this product can be used for the best and for the world.
Preparation Method
This product is made of Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5 - Triazin-2-Yl) Amino) -, Disodium Salt.
To make this product, first prepare all raw materials. In a specific ratio, take relevant organic reagents, such as compounds with corresponding amino groups, phenyl groups, triazine groups, and raw materials containing sulfonic acid groups.
The preparation process first makes the components containing amino groups and triazine groups, according to suitable reaction conditions, at a specific temperature and pressure, by means of catalysis, condensation reaction occurs to construct the main structure. Then introduce the sulfonic acid group-containing material, and through delicate steps, achieve precise connection. During the reaction process, each parameter is closely monitored, and the conditions are adjusted in a timely manner according to the progress of the reaction.
After the reaction is completed, impurities are removed through the purification process to obtain a pure product. In this way, according to this complex preparation method, this fine chemical can be obtained.
Chemical Reactions & Modifications
Fubenzenesulfonic acid, its dimer 2,2 '- (1,2-vinyldiyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino)), the product of disodium salt, its chemical reaction and modification are related to many mechanisms. In this compound, ethylamino, phenylamino and other groups interact, under specific conditions, or lead to electron cloud rearrangement, resulting in changes in reactivity.
To improve its properties, you can start by changing the reaction conditions, such as regulating temperature, pH, etc. If the temperature increases, the reaction rate may increase, but if it is too high, it may cause side reactions. PH is also critical, suitable for acid-base environment, can optimize the stability of intermediates, promote the main reaction, improve product performance, and achieve the purpose of modification, so as to meet the needs of various applications.
Synonyms & Product Names

There is a product named "Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5 - Triazin-2-Yl) Amino) -, Disodium Salt". The similarity and trade name of this product are also important in research.
Those who are the same product can express the similarity, and can help researchers communicate and avoid confusion. The trade name is the name used in the circulation of this product, which is convenient for the market.
Our researchers, to explore this product, need to identify the same trade name. Studying the same product can increase the understanding of its customization; knowing the name of the product is conducive to grasping its direction in the market. Only by focusing on the two can we fully understand the characteristics, uses and market value of this product, and promote the development of research and development.
Safety & Operational Standards
About 2,2 '- (1,2-ethylenediyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino) benzenesulfonate disodium salt product safety and operation specification
Fu 2,2' - (1,2-ethylenediyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino) benzenesulfonate disodium salt is an important chemical products. Its complex nature is related to safety and operation standards, and it cannot be ignored.
When storing, choose a cool, dry and well-ventilated place. Avoid open flames and hot topics, and cover them because they may be flammable. Store them in a sealed container to prevent moisture and impurities from invading and causing quality changes.
When operating, appropriate protective equipment must be worn. Such as protective clothing, gloves and goggles to protect the body and eyes. And the operation room must be well ventilated to remove harmful gases. If you accidentally touch the skin, rinse with plenty of water, followed by soap. If it enters the eye, rinse immediately with flowing water or normal saline, and seek medical attention as soon as possible.
Furthermore, the container after use should not be disposed of at will, and should be disposed of in accordance with regulations to avoid polluting the environment. During transportation, please follow relevant regulations to ensure stability, shock absorption and damage.
In short, the safety and operation specifications of 2,2 '- (1,2-ethylenediyl) bis (5- ((4- (ethylamino) -6- (phenylamino) -1,3,5-triazine-2-yl) amino) benzenesulfonate disodium salt are an important matter for chemical production and application. From this, disasters can be avoided and production smooth, environmental safety and personal health can be maintained.
Application Area
Brief description of a compound application field
There is a product called "Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- (4- (Ethylamino) -6- (Phenylamino) -1,3,5-Triazin-2-Yl) Amino) -, Disodium Salt". This product is useful in many fields.
In the field of printing and dyeing, it can be used as an auxiliary to help dye evenly, making the fabric color uniform, fresh and long-lasting. In the papermaking industry, it can optimize the performance of paper, enhance its strength and toughness, and help the pigment disperse, making the paper color uniform. In leather tanning, it can assist the tanning agent to make leather soft and tough, and improve leather quality. With its unique properties, this compound can play a role in many practical ways and help the development of various industries.
Research & Development
Today there is a substance called Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5 - Triazin-2-Yl) Amino) -, Disodium Salt. As a chemical researcher, I am very concerned about the research and development of this substance.
This substance has unique properties and often has different effects in chemical reactions. We have dedicated ourselves to studying its structure and characteristics, hoping to understand its application potential in various fields. After repeated experiments, we observed its reaction with different substances, recorded the data in detail, and analyzed the reason for its change.
In order to promote its development, we also consider the method of optimizing the synthesis, and strive to increase the yield and reduce the cost. And explore its potential uses in medicine, materials and other fields, hoping to open up new ways and make it beneficial to the world. Although the road ahead is long, we uphold the spirit of research and make unremitting progress, hoping to make achievements in the research and development of this product.
Toxicity Research
Today there is a product called "Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5-Triazin-2-Yl) Amino) -, Disodium Salt". As a chemical researcher, I focus on its toxicity research.
The toxicity of this product is related to the safety of all living beings. In detail, it is necessary to explore its sympathetic state with all things. Or conduct experiments on guinea pigs, mice, etc., to observe its physiological changes, observe the damage of organs and the difference in behavior. Also consider its degradation in the environment. If it does not accumulate for a long time, it may become a serious problem.
Toxicity research should not be ignored. It is related to the Kangtai of life and the tranquility of the environment. It must be done cautiously, and the truth of the toxicity of this compound must be investigated with scientific methods. Those who use this compound for future generations will show the way, avoid disasters and end in the unknown, and ensure the peace of the universe.
Future Prospects
Today there is a product called Benzenesulfonic Acid, 2,2 '- (1,2-Ethenediyl) Bis (5- ((4- (Ethylamino) -6- (Phenylamino) -1,3,5 - Triazin-2-Yl) Amino) -, Disodium Salt. We look forward to its future development as a chemist. This product may emerge in the field of chemical industry. It can be used to create delicate dyes that make the colors dazzling and glow on the fabric. It is also expected to shine in the process of drug development and contribute to the healing of diseases. Although the road ahead may be bumpy, but we uphold the heart of research, forge ahead, and firmly believe that this thing will be able to expand new frontiers in the future, benefit the world, and contribute to the bright future we expect.
Frequently Asked Questions
What are the specific chemical structures and molecular characteristics of this product?
This product is a rare wonder in the world. Its chemical structure is exquisite, and its molecular characteristics are also unique.
Its chemical structure is just like the delicate pattern of heaven's ingenious structure. The atoms are like a star in the universe, connected to each other in a specific order and with a specific force. Like the array of ancient strange doors, interlocked and orderly. Some atoms are closely connected by covalent bonds, just like strong mortise and tenon, forming a stable skeleton; some atoms have special interactions, such as hydrogen bonds, which are invisible but strong, like threads, making the whole structure seamless and flexible.
As for the molecular properties, it is really wonderful. It has unique physical properties, or it has a special form at room temperature, or it has extraordinary solubility, and can be fused with specific things. Its chemical activity is also unique. When it encounters certain substances, it can trigger a wonderful chemical reaction, which is like a subtle spell change. Just like immortals use spiritual magic to activate the power of heaven and earth, the molecules of this product can precisely interact with other molecules, or build new structures, or release hidden energy. Its stability is also just right. It is neither indestructible and has no chance of change, nor fragile and easily dissipated. It maintains a delicate balance under specific circumstances, exhibits excellent characteristics, and is used by the world to achieve extraordinary results.
What are the main application scenarios of products in different industries?
Products in various industries, each has its own place of use.
In the farming industry, products can help with cultivation, irrigation, and harvesting. Such as plows, breaking the soil and opening the ridge to make the field suitable for planting; waterwheels, diverting water to irrigate the fields, relieving the disease of drought; sickles, mowing crops, helping the autumn harvest to be fertile.
In the manufacturing industry, products are equipment and tools, which are related to the production of fine and rough. Saw can break wood, hammer can hit nails, lathe can process parts, accurate, booster material manufacturing, into all kinds of equipment.
In the business of merchants, products are goods, which are the foundation of transactions. The silk and satin of beautiful ornaments can please the eyes and attract the favor of customers; the delicacies of food can satisfy the population and make the business prosperous. The quality and quantity of goods depend on the profit and loss of merchants.
In the military industry, the products are turned into weapons and armor. The sword halberd is sharp, and it can defend against the enemy's front; the bow and crossbow are fast, and it can control distant invaders; the armor is sturdy, and the soldiers are comprehensive. It is the key to victory in the war.
In the industry of civil engineering construction, the products are bricks and beams. Bricks pave the ground and build walls, which are sturdy and durable; wood frames the house, shielding the wind and rain. Sophisticated materials make the pavilion stand for years and never fall.
In the medical profession, the products are medicinal materials and medicinal utensils. Hundred herbs are used as medicine to treat diseases and remove diseases; medicinal utensils are used to diagnose the pulse, acupuncture, and decoction to help doctors perform surgery and relieve the suffering of patients.
In the industry of education, the products can be classics and stationery. Classics contain ancient and modern wisdom and enlighten the minds of students; stationery is used for writing records and assisting students in their progress.
From this point of view, products are indispensable in different industries. Each can develop its ability and promote the progress of various industries. It is related to people's livelihood and has far-reaching impact.
What are the limitations of the physical and chemical properties of the product on its use?
The use of all utensils is subject to their physical and chemical properties. The physical properties of utensils, such as hardness, toughness, density, melting point, etc., are all limited; chemical properties, such as stability, corrosiveness, reactivity, etc., also affect their use.
Take gold as an example. Gold is soft and has good ductility. This physical property makes it easy to be cast into various exquisite shapes. It can be made into beautiful gold ornaments, but because of its softness, it is not suitable for utensils that require high hardness and wear resistance. And the chemical properties of gold are stable, and it is not easy to react with common substances, so it can be stored for a long time without decay. It is suitable for making things that need to be retained for a long time, such as important seals, covers of ancient books, etc. However, if it needs to be used to react quickly with other things to achieve specific effects, it is difficult to use.
Another example is iron, which has high hardness and high density. This physical property makes it possible to build strong structures, such as city walls and weapons. However, the chemical properties of iron are lively, and it is easy to react with oxygen and water in the air and rust. This corrosive property greatly limits its use in humid environments. If it is used to create utensils that need to be exposed to the outside for a long time and remain intact, special protection is required, such as painting, galvanizing, etc., otherwise it will be fragile and difficult to play a role for a long time.
Looking at ceramics again, ceramics have high hardness, high temperature resistance, and good insulation, so they are often used in the production of cooking utensils and insulating parts. However, ceramics have poor toughness and are fragile. This physical weakness makes them need to be extra careful during transportation and use, and are not suitable for occasions that require frequent movement and collision. And the chemical properties of ceramics are relatively stable, generally do not react with common acids and bases, and can be used to hold a variety of substances. In case of strong corrosive substances, they may still be eroded, limiting their application in special chemical environments.
The physical and chemical properties of utensils are both helpful and limited in their use. Users must carefully observe their properties and weigh the advantages and disadvantages in order to make good use of them and avoid their disadvantages.
What are the precautions for the product during storage and transportation?
When storing utensils, the environment is the most important.
When storing utensils, the environment is the first. It is properly dry and cool, and it will last for a long time. If it is in a humid place, it is easy to rust and perishable; if it is too dry, it may dry out and crack. For example, if iron utensils are placed in a wet place, they will rust and become rusty soon, which will damage their use. And the place of storage must be clean, and dust and filth should not be stained, so as not to damage the quality of the utensils.
And its arrangement and placement must also be orderly. The same kind of gathering is easy to find and use, and it will not be in a hurry or disorderly. If the debris is mixed, it will take time to use, and it will easily cause damage to the utensils.
As for transportation, protection is particularly important. All fragile and fragile objects must be wrapped in soft objects, cotton wool, straw and the like can be used to protect them from impact when they are bumpy. And when loading, it should be stable and proper, and do not shake on the side. If you are walking on the road, in case of rough and bumpy, the utensils will shake and collide, and they will be damaged.
The escort should also be cautious and attentive. Pay attention to weather changes, and in case of wind and rain, cover them in time to prevent the utensils from being wet. Stop and stop, don't be impatient, so as to ensure stable transportation.
The storage and transportation of utensils, although minor matters, are related to the integrity and practicality of the utensils, and must be observed. It is necessary to pay attention in detail and be attentive everywhere to be thorough.
How complex is the production process of the product?
Looking at today's utensils, if you want to know the complexity of their production process, you need to study all the elements in detail. The production of utensils is related to the selection of materials, process arrangement, and technical application. The three are intertwined to determine the complexity of the process.
First of all, the material selection is related to the fundamental characteristics of the utensils. If the required materials are rare and difficult to collect, or the material purity and characteristics are strict, this will increase the complexity of the process. If you want to make stainless steel utensils, you need to find high-quality iron ore. After many refinements, its impurities are removed to obtain usable refined steel. This process is cumbersome and not easy.
The second discussion of process arrangement is the vein of utensils forming. If there are many processes, and they are orderly one after the other, interlocking, one order is wrong, and the whole plate is messy, the process is very complicated. For example, porcelain making, self-mining, mud practice, billet drawing, billet, painting blank, glazing, to kiln firing, all the processes are indispensable, and each process needs to be precisely controlled, otherwise it will be difficult to become a beautiful tool.
Furthermore, the use of skills, superb and exquisite skills, is often a sign of complex craftsmanship. For example, the ancient tenon and mortise skills do not need to be riveted, but only rely on the clever fit between the woods to make the utensils stable and durable. This skill needs to be honed by craftsmen for many years to master, and its complexity is self-evident.
There are also utensils. Although the material is ordinary and the process is similar to simple, it can be seen in the details, which requires extremely high technical accuracy, and is also among the complex crafts. For example, in the case of micro-carving, there are thousands of scenes engraved between square inches, and the slightest difference will lose the charm. This cannot be done without exquisite craftsmanship.
To sum up, the complexity of the production process of utensils cannot be determined by a single factor, but is a combination of materials, processes, and techniques. The difficulty of finding materials, the complexity of processes, and the delicacy of skills can all make the process complex and extraordinary. This is the important rule to consider the complexity of the production process of utensils.