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Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate]

    Specifications

    HS Code

    810569

    Chemical Formula C42H32N6Na2O6S2
    Molecular Weight 826.86 g/mol
    Appearance Typically appears as a solid
    Solubility Solubility characteristics can vary depending on solvent; may have some solubility in polar solvents
    Melting Point Specific melting point data would require experimental determination
    Boiling Point Boiling point information would need to be experimentally obtained
    Density Density value would be determined through laboratory methods
    Ph pH in solution would depend on its dissociation and the medium
    Stability Stability can be affected by factors like temperature, light, and presence of reactive substances
    Hazard Class Classification would depend on in - depth toxicological and reactivity studies

    As an accredited Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Packaging for 1 kg of Disodium 2,2'-(E)-Ethene - 1,2 - Diylbis[5-(4 - Phenyl - 2H - 1,2,3 - Triazol - 2 - Yl)Benzenesulfonate] in sealed bag.
    Storage Store “Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate]” in a cool, dry place away from direct sunlight. Keep it in a tightly - sealed container to prevent exposure to moisture and air, which could potentially affect its stability and chemical properties. Ensure storage area is well - ventilated. Avoid storing near incompatible substances.
    Shipping "Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate]" is a chemical. Ship it in properly sealed containers, following regulations, ensuring protection from moisture and damage during transport.
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    Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate]
    General Information
    Historical Development
    The industry of chemical industry is changing with each passing day, and new products are emerging one after another. Today there is a thing called Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]. At the beginning, it was studied by various scholars, and the reason was poor, and the nature was explored. At the beginning, the progress was difficult, but everyone worked tirelessly, accumulated over the years, and the technology gradually refined. From ignorance to clarity, the process is better, and the efficiency is also increased. Since its inception, it has made its mark in various fields, either for material improvement or for scientific research breakthroughs. Although its development path has had twists and turns, its prospects are getting brighter, adding new color to the chemical industry and paving the way for future development.
    Product Overview
    There is a substance today called Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]. Its substance is also a chemical product with a unique structure. This molecule has a delicate structure and contains a specific combination of groups. 2,2' - (E) -Ethene-1,2-Diyl is the skeleton of its connection, and the two ends are partially connected to 5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate. The structure of benzene ring and triazolyl is cleverly arranged, giving this substance different properties. Or because of the characteristics of the structure, when it has a unique performance in a specific chemical reaction or application scenario, it can contribute to chemical research and practical application, and has the value of exploration.
    Physical & Chemical Properties
    Today there is a thing called "Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]". Its physical and chemical properties are relevant to our research.
    The physical properties of this thing, or its color state, can be observed to observe its degree of melting and boiling. Color, either bright or dark; state, solid or liquid. The degree of melting and boiling can be determined by its temperature range change. Chemical properties depend on its response to various things. When it encounters acid and alkali, or reacts, its properties can be known by observing its changes. With metals and organic reagents, you can try it to show its chemical activity.
    A detailed study of the physical and chemical properties of this substance is of great benefit to my chemical research, and can lay the foundation for various applications, explore its potential, and seek new paths.
    Technical Specifications & Labeling
    Today there is a product called Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]. In this product, the process specifications and identification (commodity parameters) are the key.
    Looking at the process specifications and various synthesis steps, it is necessary to follow the precise method. The material ratio and reaction conditions must be compatible. From the selection of starting materials to the control of each step of the reaction, it is all related to the quality of the finished product.
    As for the identification (commodity parameters), the content of the ingredients must be clear, and the physical properties such as color, state, taste, etc. should also be remembered in detail. This is all for the purpose of recognizing this object, so that its characteristics and uses can be seen by everyone at a glance, so as to meet the needs of all parties and provide accurate guidance for those who use this object.
    Preparation Method
    This product is Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]. Prepare all the materials first, the required raw materials, accurately weighed, and must be correct. The art of synthesis is the first step of the reaction. Use a suitable solvent to melt the reactants, control the temperature and speed, and add them in sequence. When reacting, observe its state to ensure a smooth reaction.
    After the reaction is completed, enter the purification process. Choose a suitable method to remove impurities, or filter, or extract, or recrystallize, to purify the product. The purification system should strictly follow the procedures to prevent the product from being damaged. After these various steps, this product can be obtained, but each step must be taken with caution in order to become a high-quality product.
    Chemical Reactions & Modifications
    In the field of chemistry, I study "Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]". Its chemical reaction and modification are crucial.
    To observe its reaction, it is necessary to use precise methods to control the temperature and adjust the proportions to make the ingredients just right. It is subtle, like the ancient alchemy, with every difference, thousands of miles away. When modifying, if you want to increase its stability and solubility, you must think of ingenious methods. Or add additives, or change the structure to achieve the expected properties.
    The reaction and modification of this chemical is just like the ancient craftsmen who carved beautiful jade and carefully made it into a tool, which can open up new horizons in the path of chemistry and be used by future generations.
    Synonyms & Product Names
    Today there is a thing called Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]. The name of its kind and the name of the commodity need to be studied in detail. The name of the same kind is to clarify its nature and identify its genus, so that each thing can be placed in its place and orderly. The name of the commodity is related to the circulation of the world, which is easy to recognize and trade. Both of these are important in the study of this thing. To understand the state of this thing in the city and to know the nature of its kind depends on this name. Therefore, a detailed examination of similar names and commodity names can be the cornerstone of the study of this thing, and it is very beneficial to explore its quality, use, and position in the industry.
    Safety & Operational Standards
    About Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] Product Safety and Operating Specifications
    Husband Disodium 2,2' - (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate], one of the chemical products. During its research and application, safety and operating standards are of paramount importance.
    Safety is the first word. This product has specific chemical properties and must be strictly protected when exposed. Experimenters wear suitable protective clothing, such as chemical-resistant clothing, to prevent skin from touching it. It is also necessary to wear goggles to keep your eyes safe, because the product may be irritating to the eyes. If you accidentally touch the skin, rinse quickly with plenty of water and seek medical attention as appropriate. If it enters the eyes, you need to rinse immediately and seek medical help urgently.
    As for the operating specifications. During the preparation process, the weighing of raw materials must be accurate and mixed according to a specific ratio. The reaction conditions, such as temperature, pressure, time, etc., must be strictly controlled. If the reaction temperature is too high or too low, it can cause the reaction to be biased, affecting the purity and yield of the product. And the reaction environment should be clean to avoid impurities from mixing.
    Storage is also exquisite. It should be placed in a dry, cool place, away from direct sunlight, because it may be sensitive to light. Different chemical substances coexist with it, or cause adverse reactions, so they need to be stored in categories.
    Furthermore, the post-experimental treatment should not be neglected. Waste materials should be properly disposed of in accordance with relevant regulations, and should not be discarded at will to avoid polluting the environment.
    In short, the research and operation of Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] should be carried out with safety in mind and strict compliance with operating regulations in order to achieve the purpose of research and ensure the safety of personnel and the environment.
    Application Area
    Today there is a product called "Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]". This chemical product has a wide range of application fields.
    In the field of medicine, or it can help the development of drugs, with its unique properties, or it can optimize drug delivery and make the drug effect better. In the field of materials, it is also possible. It can be used to refer to its structure to make special materials to increase its properties, such as strength and stability. In scientific research and exploration, it can be an important reagent to help students explore the secrets of microscopic and understand the principles of chemical changes. Although it is not widely known, its potential is limitless. Over time, it will be used in many fields to contribute to the progress of the world.
    Research & Development
    In modern chemistry, I have focused on the research of a special compound, namely "Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]". This material has exquisite structure and unique characteristics, and may have potential applications in various fields.
    I have carefully investigated its molecular structure, studied the reaction mechanism, and hoped to understand its essence. After repeated experiments, I have studied the conditional variables to explore the way to optimize the synthesis. I have also examined its physicochemical properties, and considered its application possibilities in materials, medicine and other industries.
    The road to research is full of thorns, but I am determined. I hope that through unremitting research, I have achieved something, promoting the development of this compound, for the benefit of chemical progress and world use, and exhausting my efforts to achieve this ambition.
    Toxicity Research
    About the toxicity study of [Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]
    Today, I am committed to the toxicity investigation of chemicals, especially Disodium 2,2' - (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] This product is important.
    This product is new, and its nature is unknown. After thinking about it, if you want to understand its toxicity, you should use scientific methods to observe its interaction with organisms. First take various experimental organisms, such as insects and rodents, and cast this product to observe its life and behavior changes. And analyze its metabolic pathway in the living body to find out whether there are any harmful substances.
    During the
    stage, we can fully know the toxicity of this thing, and provide evidence for its safe use and environmental protection. If the toxicity is low, it can be used well; if it is harmful, we should quickly find ways to avoid it, so as not to harm the living beings and damage our environment.
    Future Prospects
    Today there is a thing called "Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]". We have studied it chemically, and we hope to develop it in the future.
    This physicality remains to be explored in depth. Its structure is exquisite, and it seems to hold endless mysteries. We study it day and night, hoping to understand it, so as to uncover the way of future application.
    Although the road ahead is long, my generation is determined. I hope that in the future, it can be used in medicine and materials for the benefit of the world. At that time, this substance will shine, add brilliance to the future, and develop endless possibilities.
    Where to Buy Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate] in China?
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    Frequently Asked Questions

    As a leading Disodium 2,2'-(E)-Ethene-1,2-Diylbis[5-(4-Phenyl-2H-1,2,3-Triazol-2-Yl)Benzenesulfonate] supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    This product What is the chemical structure of Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]
    This compound is called 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate]. To know its chemical structure, let me tell you in detail.
    In this compound, the core is (E) -ethylene-1,2-diyl, which is like a beam and pillar, supporting the entire structure. Ethylene bis-carbon, each connected with a side chain. In the side chain, the benzenesulfonate group is particularly important. Above the benzene ring, the sodium sulfonate group gives the compound certain water solubility and ionic properties. More importantly, the 5th position of the benzene ring is connected with 4-phenyl-2H-1,2,3-triazole-2-group. This triazole group has a special conjugated structure, which adds unique chemical activity and stability to the compound. Phenyl is connected to the 4th position of the triazole, which introduces aromatic properties to the structure and affects the physical and chemical properties of the compound.
    This compound has a complex and delicate structure, and the interaction of each group jointly determines its unique properties and potential applications in chemical reactions, materials science or biomedicine.
    Product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] What are the main uses
    This is a chemical substance called bis (2- (5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate) vinyl) disodium salt. It has a wide range of uses and plays an important role in many fields.
    First, in the field of materials science, this substance can be used as a key component of special functional materials. Due to its unique chemical structure, it endows materials with properties such as excellent optical properties and good stability, which can improve the quality and performance of materials and is used in the manufacture of high-end optical materials, electronic devices, etc.
    Second, in the field of biomedicine, or can be used for drug development. Due to its structural characteristics, or the ability to interact with biomolecules, it can become a carrier for targeted drugs, or as a lead compound with specific biological activities, it can help the creation of new drugs and provide new possibilities for disease treatment.
    Third, in the field of catalysis, the substance may exhibit catalytic activity. Its unique structure can provide a specific activity check point for the reaction, promote the progress of specific chemical reactions, improve reaction efficiency and selectivity, and has potential application value in organic synthesis and other fields.
    Fourth, in the field of analysis and detection, with its special structure and properties, or can be used as an identifying molecule for the detection and analysis of specific substances. In combination with the specificity of the target substance, sensitive detection of the target substance is achieved through a certain detection method, which helps in environmental monitoring, food safety testing, and other work.
    How is the solubility of the product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]
    This substance is called bis (2,2 '- (E) -ethylene-1,2-diylbis (5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate). To know its solubility, let me tell you in detail.
    Generally speaking, the solubility of a substance is affected by a variety of factors. The structure of this compound contains phenyl ring, triazole group and sulfonic acid group. The phenyl ring and triazole group are hydrophobic to a certain extent, because they are non-polar parts, they have poor affinity for water. However, the sulfonic acid group can be ionized and hydrophilic, and can form ion-dipole interactions with water molecules, thereby helping the substance to dissolve in water.
    If placed in water, the substance may exhibit a certain water solubility due to the ionization of the sulfonic acid group. However, the hydrophobicity of benzene ring and triazolyl may limit its solubility, making it difficult to dissolve at very high concentrations.
    In organic solvents, it exhibits good solubility due to the presence of hydrophobic groups, or in some non-polar or weakly polar organic solvents, such as toluene and dichloromethane. However, the specific solubility needs to be accurately determined by experiments. Many experimental conditions such as temperature, solvent purity, solute to solvent ratio, etc., will affect its solubility. According to structural analysis alone, it can be speculated that its solubility in water and organic solvents may show a complex situation, which needs to be further determined by experiments.
    How is the stability of the product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]?
    This substance is called 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate], and its stability needs to be observed from many aspects.
    To observe its chemical structure, it contains triazole and benzenesulfonate radical group. The triazole ring has a conjugated structure and has certain stability. Because of its electron cloud delocalization, it can disperse energy and stabilize the molecular system. In the benzenesulfonate radical group, the sulfonic acid group is conjugated with the benzene ring, which also enhances the structural stability, and the sulfonic acid sodium salt form has good solubility in water, and the ionization state is stable in the aqueous phase.
    In terms of chemical bond energy, intra-molecular carbon-carbon, carbon-nitrogen and other chemical bonds have high energies and require more energy to break, so they are not easy to decompose under normal conditions. However, under extreme conditions such as high temperature, strong acid or strong base, the stability may be affected. At high temperatures, the thermal motion of molecules intensifies. When the energy reaches the threshold of chemical bond energy, the bonds are easy to break and cause structural damage. In strong acid or strong base environments, groups may undergo protonation and deprotonation reactions, which change the molecular charge distribution and electron cloud structure, thereby affecting the stability.
    Light is also an influential factor. Although there are no particularly light-sensitive groups in the structure of this substance, long-term strong light irradiation or luminescent chemical reactions can change the molecular structure.
    Overall, 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate] has good stability under normal temperature, neutral aqueous phase and dark conditions; but under extreme physical and chemical conditions, the stability may change.
    Product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] What is the production process
    To prepare this substance, several steps are required. First, when taking benzene sulfonic acid or the like, add an appropriate agent to make it co-react with materials containing phenyl triazole. This step requires careful control of temperature and humidity, material ratio and reaction time, so that the two can be combined to form an intermediate containing sulfonic acid base and triazole.
    Second, take another genus of ethylene and activate it in a suitable way. Here, either by the force of a catalyst or by adjusting the reaction environment, ethylene has better reactivity.
    Then, the first-obtained intermediate meets the activated ethylene. The key to this reaction is to choose precise reaction conditions, such as selecting a suitable solvent and controlling the temperature in a specific domain, so as to help the two form an alkenyl-linked structure, and then obtain the prototype of the target molecule.
    However, at this time, the product may be mixed with impurities, so it still needs to be refined. The method of recrystallization can be used to select a suitable solvent, so that the product can be crystallized out of it, and its impurities can be removed. Chromatography can also be used to separate the product by adsorption and elution. After these steps and strictly observing the requirements of each step, a pure Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] can be obtained.