Products

Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate

    Specifications

    HS Code

    241727

    Chemical Formula C11H11NaO7S
    Molecular Weight 310.259 g/mol
    Appearance White to off - white powder
    Solubility In Water Soluble
    Ph Of Aqueous Solution Neutral to slightly basic
    Odor Odorless
    Stability Stable under normal conditions, may decompose on heating
    Hazardous Decomposition Products Sulfur oxides, carbon oxides, sodium oxides

    As an accredited Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 1 kg of Sodium 3,5 - Bis(Methoxycarbonyl)Benzenesulfonate in sealed chemical - grade bag.
    Shipping Sodium 3,5 - Bis(Methoxycarbonyl)Benzenesulfonate is shipped in secure containers. Packaging safeguards against spills and damage. Shipment follows chemical transport regulations to ensure safe and compliant delivery.
    Storage Store Sodium 3,5 - Bis(Methoxycarbonyl)Benzenesulfonate in a cool, dry place away from heat and open flames. Keep it in a tightly - sealed container to prevent moisture absorption and exposure to air, which could potentially affect its chemical properties. Store separately from incompatible substances like strong acids and bases to avoid reactions.
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    Certification & Compliance
    Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate
    General Information
    Historical Development
    Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate, its origin, was first encountered by various sages on the road of research. At that time, the field of chemistry was booming, and everyone was working hard to develop new knowledge.
    At the beginning, only some of its characteristics were known, and there were many mistakes and difficulties in the synthesis method. However, the researchers were persevering, and they continued to investigate the experiments over the years. Whether in the choice of materials, or in the context of reaction, they all considered in detail.
    After years of work, the synthesis method became more and more refined, and the yield also rose steadily. From the crude at the beginning to the exquisite in the future, every step was soaked in the blood of the public. The evolution of this chemical is like a boat on a long river. Although there are constant twists and turns, it is finally possible to see today's development with the wisdom and perseverance of various sages. It has emerged in various fields of industry and scientific research, and its function is becoming increasingly apparent.
    Product Overview
    Product Overview
    Today there is a product called Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate. Its unique properties are a genus of sulfonates. Looking at its structure, above the benzene ring, there are methoxycarbonyl groups at positions 3 and 5, and the sulfonic acid group is also attached to the benzene ring, and it forms a sodium salt state.
    This product is widely used in various fields of chemical industry. In the process of some fine chemical synthesis, it is often used as a key intermediate to help the reaction advance in an orderly manner to form the desired product. It has a certain solubility and can be well dispersed in specific solvents. This property also makes it play an important role in the reaction of solution systems. With its structure and properties, Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate contributes to the innovation and development of chemical products, driving the industry forward.
    Physical & Chemical Properties
    Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate is also a chemical substance. Its properties are physical and chemical. Physically, its color is often a specific color, or white or near color, and it is a solid powder. It is uniform. Its density has a certain value, reflecting the proportion of its amount. Solubility is also an important physical property. In a specific solution, it is soluble or soluble, and the solubility of this solution is different.
    In terms of chemical properties, the groups contained in its molecules determine its chemical reaction activity. For example, methoxycarbonyl and benzenesulfonic acid groups can be reactive. In some cases, it can be replaced and reversed, and the transformation of the basis can lead to the change of the whole property. And in different degrees and acid environments, the qualitative of the transformation is also different, which is also known to those who have studied the physicochemical properties of Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate.
    Technical Specifications & Labeling
    Today there is Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate, which is very important in the investigation of process specifications and identification (product parameters).
    The process specification is the criterion for making this product. Since the selection of raw materials, it is necessary to be pure and free of impurities to ensure excellent quality. The order of operation needs to follow precise procedures, and each step is related to success or failure. The temperature, time and proportion of the reaction agent are all fixed, and there should be no slight difference.
    The logo (product parameters) cannot be ignored. Its characteristics, purity and proportion of ingredients must be clearly marked. This is the evidence for users to identify the quality and the basis for transaction integrity. Precise identification allows all parties to understand its nature, make good use of it, and promote its orderly and smooth operation in the chemical industry, ensuring both quality and safety, in order to achieve long-term development.
    Preparation Method
    To prepare Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate, the first thing to do is to prepare its raw materials. Take an appropriate amount of 3,5 - dicarboxybenzenesulfonate and methanol, which are the key starting materials.
    The method of preparation is to first place 3,5 - dicarboxybenzenesulfonate in the reactor, slowly add methanol, and add an appropriate amount of catalyst to promote the reaction speed. Control the reaction temperature in a suitable range, about within a specific temperature range, and maintain it for a certain period of time.
    During the reaction process, pay close attention to its changes and adjust the conditions in a timely manner according to the progress of the reaction. After the reaction is completed, the product is purified through a series of post-processing steps, such as filtration, distillation, crystallization, etc. In this way, a relatively pure Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate can be obtained. This preparation method, the raw materials and the production process cooperate with each other, the reaction steps are orderly, and there is a reasonable control mechanism to ensure the quality and quantity of the product.
    Chemical Reactions & Modifications
    I dedicated myself to the chemical research of Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate. Looking at its chemical changes, the reaction path is quite complicated. The initial reaction is often mixed with specific raw materials according to the established conditions, and under suitable temperature and pressure, the interaction between molecules is initiated.
    However, the initial reaction is not of ideal quality. Its purity is insufficient, impurities are disturbed, and the performance is also lacking. Therefore, think about changes to improve. After repeated experiments, adjust the ratio of raw materials, change the reaction environment, and control the reaction rate.
    After these efforts, the effect of the reaction gradually improved. The purity of the product gradually increased, the impurities gradually decreased, and the performance also improved. This chemical reaction and modification is like exploring a hidden path. Although it encounters obstacles, it is relentlessly studied to eventually improve the performance of this product, which can lay a good foundation for subsequent applications.
    Synonyms & Product Names
    There is a product named Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate. This product is also known as the others in the industry. Its synonymous name, known for its chemical structure, aims to accurately describe the composition and characteristics of its molecules.
    As for the trade name, merchants also have other names for its characteristics or to meet the needs of the market. This substance has both rigorous chemical properties and various names derived from market circulation. Although the names are different, they all refer to this Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate. Looking at its synonymous names and trade names, such as branches and leaves tied to the same tree, although they are different in shape, they are actually one, together expressing the essence of this chemical substance, and each has its own use in the field of chemical research and application, complementing each other.
    Safety & Operational Standards
    About "3,5-Bis (Methoxycarbonyl) Benzenesulfonate" Product Safety and Operation Specifications
    Husband "3,5-Bis (Methoxycarbonyl) Benzenesulfonate Sodium" (Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate), chemical products are also. Safety and operation standards are of paramount importance in the process of preparation and use.
    At the beginning of preparation, all raw materials must be taken in accurate quantities. When weighing, precise equipment must be used to ensure that the proportion of raw materials is correct. The reaction vessel used should be clean and suitable to prevent impurities from mixing and causing reaction deviations.
    When reacting, temperature, pressure and other conditions must be strictly set. If the temperature is high, the reaction will be too fast, or it will be out of control; if the temperature is low, the reaction will be slow, which will affect the yield. The same is true for pressure. Improper pressure may cause damage to the container and endanger safety.
    In the operation room, good ventilation must be carried out. This product may evaporate harmful gas and accumulate in the room, harming the operator's body. And when operating, protective equipment is essential. Wear protective clothing, protective gloves on hands, protective glasses, and comprehensive protection to avoid direct contact with this product.
    If it accidentally touches the skin, rinse quickly with plenty of water, followed by soap. If it enters the eyes, quickly open the eyelids, rinse with flowing water or normal saline, and then seek medical attention.
    When storing, choose a dry, cool, ventilated place to avoid fire and heat sources. Store separately from oxidants, acids, etc., to prevent interaction and cause danger.
    After use, waste should not be disposed of at will. According to relevant regulations, collect it separately and dispose of it properly to avoid polluting the environment.
    All these are the "3,5-bis (methoxycarbonyl) benzenesulfonate sodium" safety and operation specifications. By following them, the process can be guaranteed smoothly, personnel safety and the environment is safe.
    Application Area
    Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate is also an exquisite product of chemistry. Its application field involves a wide range of. In industrial manufacturing, it can be used as an auxiliary agent to help smooth the process and improve the quality of the product. In material science, it can adjust the properties of materials and endow them with specific capabilities to meet diverse needs. In the medical field, it can be used as a drug carrier to assist in the delivery of medicinal effects and increase the healing effect. In agriculture, it can also be beneficial, or protect the growth of crops, or prevent the invasion of diseases and pests. This product, with its unique nature, can be used in various application fields, just like a pearl in various realms, shining brightly, adding bricks and tiles to the development of human beings and becoming an indispensable part.
    Research & Development
    I have been dedicated to the research and development of Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate for a long time. At the beginning, I explored its chemical structure, dissected the relationship between various atoms, and strived to clarify its essence. Then, I studied its synthesis method, tried various paths, or changed the reaction conditions, or changed the reactants, tried repeatedly, and worked tirelessly. During this period, I also encountered many problems, the yield did not meet expectations, and the purity of the product was not good. However, I did not give up. I investigated the crux of the matter in detail, read the classics, and consulted colleagues. After unremitting efforts, I finally obtained the method of optimization, the yield was improved, and the purity was also ideal. Looking to the future, we hope to expand its application field based on this, or in materials science, or in drug research and development, so that this achievement can benefit more fields and contribute to the development of chemistry.
    Toxicity Research
    Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate is of great importance in our chemical research. Now we have examined this substance in detail, and we have investigated it through many experiments. Take all kinds of creatures as a test, and observe the signs they feel from this substance. Or see changes in their behavior, or their body shape violates. Observe the path of their entry into the body, inhalation of the nose and mouth, contact with the skin, and diet. After repeated investigation, it is clear that its toxicity is different under different doses. When a small dose is taken, there may be minor injuries, while a large dose is in danger. We should be careful, and strictly abide by the regulations when taking and storing, so as to prevent accidental poisoning and harm to people, and to protect the surrounding environment.
    Future Prospects
    Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate is unique and has a wide range of uses. Although it is used today, it has shown its effect, but our generation of chemical workers still have great hope for the future.
    It is expected that in the future, this product will be able to develop its strengths in various fields. In medicine, it may help the research and creation of new drugs to heal diseases; in the field of materials, it can promote the birth of new materials, which are tough and specific. And on the technology, it is expected to improve, reduce consumption and improve production, and achieve perfection.
    We should be enterprising and study relentlessly, so that Sodium 3,5 - Bis (Methoxycarbonyl) Benzenesulfonate will shine in the future, for the well-being of the world, and achieve unprecedented greatness to reach unprecedented heights.
    Where to Buy Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate in China?
    As a trusted Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading Sodium 3,5-Bis(Methoxycarbonyl)Benzenesulfonate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What are the chemical properties of Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate
    The chemical properties of the compound composed of sodium and 3,5-bis (methoxycarbonyl) benzenesulfonate are particularly important. Sodium, which is reactive, is often present in the ionic state in such compounds.
    Guanfu 3,5-bis (methoxycarbonyl) benzenesulfonate, which has a methoxycarbonyl group and a benzenesulfonate group. Methoxycarbonyl, which has a certain electron-withdrawing property, can affect the electron cloud distribution of molecules, and under suitable conditions, can undergo reactions such as hydrolysis to produce corresponding carboxylic acids and alcohols.
    The benzene sulfonic acid group, the sulfonic acid group is strongly acidic, and its sodium salt is easily soluble in water. In water, sodium ions and 3,5-bis (methoxycarbonyl) benzene sulfonic acid ions can be ionized, so this compound exhibits good ionic characteristics.
    Furthermore, due to the conjugated system of the benzene ring, this compound has specific stability to external factors such as light and heat to a certain extent. However, when encountering strong oxidizing agents or reducing agents, the benzene ring and its connected groups may react.
    Because it contains multiple polar groups, it can often be used as an ionic intermediate in organic synthesis to participate in nucleophilic substitution, electrophilic substitution and other reactions to construct more complex organic structures. In solution, its ionic properties can affect the physical and chemical properties of the system such as conductivity and surface activity, and have potential applications in many fields such as materials science and medicinal chemistry.
    What are the preparation methods of Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate
    The method of preparing 3,5-bis (methoxycarbonyl) benzenesulfonate sodium is a relic of the ancient book "Tiangong Kaiwu", and the method can be found below.
    First, use 3,5-bis (methoxycarbonyl) benzenesulfonate as the starting material and dissolve it in an appropriate amount of solvent, such as alcohol or water. This solvent needs to be able to dissolve the raw material well without side reactions with the product. Then, slowly add an appropriate amount of alkaline substances such as sodium hydroxide or sodium carbonate, and stir it gently to fully react. During this process, the acid and base neutralize to form 3,5-bis (methoxycarbonyl) benzenesulfonate sodium. After the reaction, the product can be precipitated by means of evaporation of solvent, cooling and crystallization, etc., and then filtered, washed, and dried to obtain a pure product.
    Second, 3,5-dimethylbenzoic acid can also be used as the starting material. First, a sulfonation reagent, such as concentrated sulfuric acid or fuming sulfuric acid, is used to carry out a sulfonation reaction. At a suitable temperature and reaction time, a sulfonic acid group is introduced into the benzene ring. Next, methanol and a catalyst, such as concentrated sulfuric acid or p-toluenesulfonic acid, are used for esterification to convert the carboxyl group into a methoxycarbonyl group. Finally, the sulfonic acid group is neutralized in alkali solution to form its sodium salt. After separation and purification, 3,5-bis (methoxycarbonyl) benzene sulfonate can also be obtained.
    The preparation method requires attention to the precise control of reaction conditions, such as temperature, reactant ratio, reaction time, etc., to improve the purity and yield of the product. The operation of each step also needs to follow the specifications and be careful before the preparation of this compound.
    What are the application fields of Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate
    Alpha 3% 2C5 -bis (methoxycarbonyl) sodium benzenesulfonate is widely used in chemical industry. In the corner of material preparation, it can be used as a surfactant. Because its structure contains both hydrophilic sulfonic acid groups and lipophilic methoxycarbonyl groups, it can concentrate at the interface and change the surface properties of the chemical system. During emulsion polymerization, the monomers can be uniformly dispersed in the medium, assisting in the stable formation of polymer particles, thereby improving the properties of the material, such as improving the toughness and strength of the material.
    In the field of organic synthesis, it also has its uses. It may be used as a catalyst to participate in specific reactions. Due to the conjugated structure of the benzene ring and the characteristics of the linked functional groups, the activity and selectivity of the reaction can be affected. For example, in some esterification reactions or nucleophilic substitution reactions, the ratio of the reaction rate to the product can be adjusted to guide the reaction in the desired direction, making the synthesis process more efficient and accurate.
    In the field of drug development, it cannot be ignored. It may be used as a drug excipient to assist in the molding and stabilization of drugs. With its unique chemical properties, it can regulate the dissolution rate and release characteristics of drugs. For example, in slow and controlled release preparations, it can participate in the construction of the structure of the drug carrier, so that the drug can be released at a specific rate and manner, improving the efficacy and safety of the drug, and reducing the stimulation of the drug to the body.
    In addition, it may have potential for environmental treatment. Because of its solubility and chemical activity, it can be used to treat certain pollutants. For example, for some oily pollutants, its surface activity can promote the emulsification and dispersion of pollutants, which is convenient for subsequent treatment and removal, and helps to purify and repair the environment.
    What are the manufacturers of Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate?
    Today there are manufacturers of sodium-3,5-bis (methoxycarbonyl) benzenesulfonate. This is a product in the field of fine chemicals and is widely used in organic synthesis, medicinal chemistry and other fields.
    In China, many chemical companies are involved in the production of this product. For example, in the coastal area of Suzhou and Hangzhou, there are large chemical plants with advanced process equipment and exquisite technical teams. They are quite accomplished in the production of organic sulfonate products, or are involved in the manufacture of this product. And in the land of Qilu, there are also chemical giants. They have been deeply involved in chemical industry for many years and have a rich product line. They spare no effort in the research and development and production of fine chemicals, or they are suppliers of sodium-3,5-bis (methoxycarbonyl) benzenesulfonate.
    Furthermore, there are also strong chemical companies overseas, in Europe, America and other places. Germany, France and other countries in the European continent have a deep chemical heritage, and enterprises focus on R & D and quality, or there are those who produce this compound. The American Barney chemical industry is developed, and many fine chemical companies focus on characteristic products, or they are among the production of this compound.
    To determine the exact manufacturer, you need to check the chemical product directory, industry exhibition information, or consult senior people in the chemical industry to get accurate information. And the market situation is constantly changing, with the rise and fall of manufacturers and the increase and decrease of products occurring from time to time. It is necessary to track the industry dynamics in real time in order to be a comprehensive strategy.
    What is the market price of Sodium 3,5-Bis (Methoxycarbonyl) Benzenesulfonate?
    Sodium-3,5-bis (methoxycarbonyl) benzenesulfonate, this is a special chemical substance. To know its market price, it is not easy to find the rare treasure hidden in the hidden corner of the market. Because "Tiangong Kaiwu" involves mostly traditional crafts and products, it is not as expensive as such fine chemicals.
    If you want to guess its price, you need to consider many factors. From the perspective of raw materials, the difficulty and cost of methoxycarbonyl and benzenesulfonate-related raw materials have an impact. If the raw materials are scarce and rare, the price must be high; if the sources are extensive, it is expected to be close to the people.
    Furthermore, the preparation process is also critical. If complex instruments, cumbersome steps, and strict environmental conditions are required, the cost will be high; if the process is simple, the cost may be reduced.
    Market supply and demand also affect its price. If many industries have strong demand for it, the demand will exceed the supply, and the price will rise; if there is little demand, the supply will exceed the demand, and the price will fall.
    In addition, the scale of production also plays a role. Large-scale production may reduce costs through scale effects, and the price may have advantages; small-scale production will be difficult to reduce costs, and the price may be high.
    Although it is difficult to know the exact market price, considering factors such as raw materials, process, supply and demand, scale, etc., it may be possible to gain insight into its price level and further explore its market value.