Products

Sodium 2-Sulfanylethanesulfonate

    Specifications

    HS Code

    471378

    Chemical Formula C2H5NaO3S2
    Molar Mass 164.18 g/mol
    Appearance White to off - white powder
    Solubility Soluble in water
    Ph Aqueous Solution Typically around neutral (pH ~ 7)
    Boiling Point Decomposes before boiling
    Melting Point 250 - 255 °C (decomposes)
    Odor Odorless or very faint odor
    Stability Stable under normal conditions
    Hazard Class Non - hazardous for most common uses

    As an accredited Sodium 2-Sulfanylethanesulfonate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100 g of Sodium 2 - Sulfanylethanesulfonate packaged in a sealed, chemical - resistant bag.
    Storage Sodium 2 - Sulfanylethanesulfonate should be stored in a cool, dry place. Keep it away from heat sources and open flames as it may be reactive. Store in a well - sealed container to prevent moisture absorption and protect it from air to avoid possible oxidation, ensuring the substance remains stable and ready for use in various applications.
    Shipping Sodium 2 - Sulfanylethanesulfonate is shipped in sealed, corrosion - resistant containers, safeguarded from moisture and oxidizing agents. It's transported under regulated conditions to maintain its chemical integrity during transit.
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    Sodium 2-Sulfanylethanesulfonate
    General Information
    Historical Development
    The History of Sodium Thioglycolosulfonate
    Sodium thioglycolosulfonate is widely used in the chemical industry today. Tracing its origin, when it was first studied this substance, all the sages worked hard. In the past, science and technology were not as prosperous as they are today, and it was very difficult to study this product.
    At that time, the researchers used limited tools in a simple environment to analyze its nature and explore its system. At first there was a rough result, although it was not refined, it paved the way for the future. With the passage of time, technology has gradually flourished, and the researchers have been able to use new tools and techniques to explore its subtleties.
    The method of making is also changing. At first, it was complicated and produced less, but after many improvements, it gradually became more abundant and better in quality. The use has also been narrow and wide, and it was only used for small purposes at the beginning, but now it has its merits in all karma. The evolution of this substance depends on the efforts of researchers of all dynasties to achieve its prosperity today.
    Product Overview
    "Sodium 2 - Sulfanylethanesulfonate Product Overview"
    There is a product today, named Sodium 2 - Sulfanylethanesulfonate. It is an important product in the chemical industry and is very useful in various fields. It has unique properties and can be used as a key auxiliary agent in the reaction, which helps the reaction to be smooth and improves the yield.
    Its shape or powder shape, pure color and uniform quality, excellent stability, can be stored for a long time under normal conditions without deterioration. In organic synthesis, it is often used as a sulfur source to introduce sulfur groups to construct sulfur-containing compounds. This compound has potential in medicine, materials and so on. And because of its special structure, it can react specifically with many substances, providing the possibility for the synthesis of novel molecular structures. It is an indispensable product in chemical research and production.
    Physical & Chemical Properties
    Today there is a thing called Sodium 2 - Sulfanylethanesulfonate. Its physical and chemical properties are particularly important. Looking at its shape, under normal conditions, it may be a solid state, with pure and moist color. Its melting point and boiling point are fixed, which is related to its morphological transformation at different temperatures.
    When it comes to solubility, it is soluble in water, and can be combined with water molecules to form a uniform system. This is because the groups contained in the molecular structure are similar to water. Chemically, it has a certain stability. However, when it encounters specific reagents such as strong oxidants, it will also change. Active parts such as sulfur atoms in its molecules are easy to cause chemical reactions and affect their chemical properties. All of these are the key to the study of this object, and are also of great significance in practical applications.
    Technical Specifications & Labeling
    "Sodium 2 - Sulfanylethanesulfonate Technical Specifications and Labeling (Product Parameters) "
    For Sodium 2 - Sulfanylethanesulfonate, its technical specifications are the first purity. It needs to reach a very high degree of purity, and the impurity content must be minimal, which is accurate for quality.
    Its physical properties are also the key. Viewing its color, it should be pure color, and there should be no variegated ginseng mixing. Its shape, either powder or crystal, must be uniform, without agglomeration or foreign matter.
    In terms of the label, the name of Sodium 2 - Sulfanylethanesulfonate must be clearly indicated on the product packaging, which cannot be wrong. And product parameters such as content, purity, production date, shelf life, etc., must also be carefully marked, so that users can see at a glance, without the risk of misuse. In this way, the technical specifications and labeling specifications are in line to ensure the quality and safety of the product.
    Preparation Method
    The method of making Sodium 2-Sulfanylethanesulfonate is related to the raw materials and production process, reaction steps and catalytic mechanism.
    The raw materials are sodium hydrosulfide and sodium 2-chloroethane sulfonate. In the reaction kettle, control the temperature to a suitable temperature, about 60 degrees Celsius, mix the two in proportion slowly, and keep stirring to promote uniformity. This is the beginning of the reaction.
    The reaction steps are as follows. The two are combined in phase, and the hydrogen sulfide is replaced by the chlorine atom to form the initial form of Sodium 2-Sulfanylethanesulfonate. The process takes time, about three hours.
    Catalytic mechanism is the catalyst of Wright's decision, which can increase the reaction rate and reduce the activation energy. This agent is added before the reaction, and the dosage is precise. The final product is purified to remove impurities and leave pure Sodium 2 - Sulfanylethanesulfonate for other uses.
    Chemical Reactions & Modifications
    Watching Sodium 2 - Sulfanylethanesulfonate This thing, its transformation should and change, is worth a deep study. The researchers of the past, every time they sought it by conventional methods, they should or did not meet their expectations.
    At the beginning of its transformation, all things touch each other, like the wind and clouds. However, the reaction trend is sometimes perverse, or slow or urgent, and unusual rules can be bundled. Investigate the reason, the structure of the cover molecules and the difference of the environment.
    If you want to be good at its change, you must first understand its nature. Observe the micro-structure of its structure, just like watching the stars in the dark night, looking for its laws. Change the reaction environment, adjust the temperature and humidity, and change the catalytic things, still tune the sound of the string, hoping to get a good song.
    Only with a prudent heart, to explore its mysteries, in the way of transformation, or to obtain its wonders, so that the nature of Sodium 2-Sulfanylethanesulfonate can be used by me, and the work of change can be made into an extraordinary cause.
    Synonyms & Product Names
    Alas! Sodium 2 - Sulfanylethanesulfonate is discussed today. Its synonyms and trade names are important in real chemical research.
    Sodium 2 - Sulfanylethanesulfonate, or sodium thioglycoleesulfonate. According to its chemical structure, "mercapto" contains thiohydrogen groups, "ethanesulfonic acid" shows the combination of carbon chain and sulfonic acid group, and "sodium" shows its salt properties.
    As for trade names, there may be different names in the industry. Or for profit sales, or because of specific processes, merchants take good names to recognize their products. However, no matter what the name is, it refers to this specific chemical. For our chemical researchers, familiar with its synonyms and trade names, we can be accurate and accurate in research and application without confusion. This is of great significance to chemical production and scientific research.
    Safety & Operational Standards
    "Sodium 2 - Sulfanylethanesulfonate Safety and Operation Code"
    Sodium 2 - Sulfanylethanesulfonate is also a chemical product. Its safety and operation standards are related to the smooth operation of the experiment, the safety of the human body, and cannot be ignored.
    In storage regulations, it is necessary to choose a dry, cool and well-ventilated place. Cover its resistance to moisture and heat. If it is in a humid and warm place, it may deteriorate and cause accidents. The container must be tightly closed to prevent contact with foreign objects and damage its quality.
    When operating, follow the procedures. Appropriate protective equipment must be worn, such as gloves, goggles, etc. Gloves to prevent it from dating with the skin, and goggles to prevent it from splashing into the eyes. If you operate in a poorly ventilated place, it is advisable to prepare a ventilation device so that the exhaust gas can be discharged quickly, so as not to accumulate in the room and harm the person.
    If you accidentally touch it, quickly rinse with a lot of water. If it enters the eye, especially when rushing, and seek medical consultation without a slight delay. After use, the residue should not be disposed of at will, but should be disposed of in accordance with regulations to avoid polluting the environment and causing harm.
    Furthermore, before use, you must read the instructions carefully to understand its nature and know its danger before you can operate it correctly. Everyone should also study the safety regulations and keep them in mind. In this way, the experiment can be guaranteed, and the effectiveness of Sodium 2-Sulfanylethanesulfonate can also be put into good use.
    Application Area
    Sodium 2 - Sulfanylethanesulfonate, the wonders of chemistry. Its application field is wide, in industry, it can be used as a surfactant to help materials disperse evenly and make the production process smoother. In the field of scientific research, it is often a key reagent for experiments, helping to explore the mysteries of matter. And in medicine, it may participate in drug synthesis, contributing to the treatment and saving of people. With its unique chemical structure, this compound blooms in many fields, like a delicate key, opening the door to different application fields, attracting countless researchers to explore and study, hoping to discover more efficiency and benefit the world.
    Research & Development
    Taste the wonders of chemical industry, about all things. Today there is Sodium 2 - Sulfanylethanesulfonate this thing, its research and progress, our generation of importance.
    At the beginning, explore its nature, analyze its structure, through various experiments, to know its characteristics. In the state of reaction, observe its changes, adjust various elements, and hope to obtain good results.
    Then, think about its use. Or in the field of medicine, auxiliary healing work; or in the world of materials, increase the nature of things. After years of study, the method is gradually mature and the effect is gradually apparent.
    Looking at it today, it has potential in industry and people's livelihood. We should continue to be diligent, deeply study its principles, and expand its use, so that this product can be used in the world to develop its brilliance, for the well-being of the public, and to promote the chemical industry and continue to prosper.
    Toxicity Research
    Since modern times, in the field of chemistry, the investigation of the toxicity of substances has been crucial. Today there is Sodium 2 - Sulfanylethanesulfonate, and its toxicity research should not be ignored.
    Examine this substance in detail, and it is necessary to observe its properties in various environments and the reaction with other substances. To observe its impact on biological organisms, from microscopic cells to macroscopic organisms, should be carefully investigated. Or in the context of experiments, apply different doses to test organisms to observe changes in their physiological functions and behavioral habits.
    Furthermore, consider its degradation state in the natural environment and the toxicity of degradation products. In this way, the full picture of its toxicity can be obtained, providing a solid basis for its application and prevention, and ensuring the safety of people, materials and nature.
    Future Prospects
    Sodium 2 - Sulfanylethanesulfonate, it is also a matter of transforming things. We are researching it, and we have not yet developed it.
    This material property is special, and it has no use. Or it can be used in the field of research and special effects, and it can be used to remove diseases and diseases; or it can be used in the field of chemical industry, and it can be exquisite, and it can be turned into a strange thing.
    My research day and night, to reveal its secrets. Hope that it can be used in the future, it will be great, and it will not benefit this world, but also benefit the next generation. Make this transformation, like a bright pearl, shining on the moon and the river, able to make contributions and make contributions in all domains, and bring happiness to the world. This is our hope.
    Where to Buy Sodium 2-Sulfanylethanesulfonate in China?
    As a trusted Sodium 2-Sulfanylethanesulfonate 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 2-Sulfanylethanesulfonate 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 main uses of Sodium 2-Sulfanylethanesulfonate?
    Sodium 2-Sulfanylethanesulfonate, the Chinese name is often 2-mercaptoethylsulfonate. This substance has a wide range of uses and plays an important role in the fields of industry, medicine, and daily chemicals.
    In the electroplating industry, it is a key additive. It can optimize the quality of the electroplating layer to make it more uniform, dense and bright. This effect is achieved by adjusting the deposition rate and crystallization morphology of metal ions during the electroplating process. For example, in nickel plating, copper plating and other processes, adding an appropriate amount of this agent can effectively improve the properties of the coating, enhance its corrosion resistance and wear resistance, and make the electroplated products more durable and beautiful.
    In the field of medicine, it also has important uses. Due to its detoxification and antioxidant properties, it can be used in the synthesis of certain drugs, participating in reactions as intermediates, and assisting in the synthesis of compounds with specific pharmacological activities. In addition, in some detoxification treatment programs, it may be able to combine with toxic substances in the body or participate in the detoxification and metabolism process by virtue of its own chemical properties, helping the human body to excrete toxins.
    In the daily chemical industry, it is often used as a special surfactant. Because its structure contains hydrophilic sulfonate groups and sulfhydryl groups with specific functions, it can exhibit unique surface activity. Added to shampoo, it can help clean scalp oil, and at the same time have a certain care effect on hair, reducing hair damage; in skin care products, or with its antioxidant properties, protect the skin from free radical damage and delay skin aging.
    In summary, Sodium 2 - Sulfanylethanesulfonate plays a key role in many industries due to its unique chemical structure, which is of great significance for improving product performance, protecting human health and improving quality of life.
    What are the physical properties of Sodium 2-Sulfanylethanesulfonate?
    Sodium-2-thioalkyl ethane sulfonate, its physical properties are quite critical. Under normal temperature, or in the form of a solid state, it often shows a white crystalline appearance, and it is pure and fine in quality. Its solubility also has characteristics. It has good solubility in water and can dissolve with water to form a uniform solution. This is because the molecular structure contains hydrophilic sulfonic acid groups.
    Furthermore, the density of this substance is relatively ordinary, or it is in a certain range. Its melting point is also one of the important physical properties. After measurement, a specific temperature value can be obtained. At this temperature, this substance gradually melts from a solid state to a liquid state. And its stability can also be described. Under normal environmental conditions, it can maintain the stability of its own structure and properties, and is not prone to decomposition or other chemical reactions.
    In case of special conditions, such as high temperature, strong acid and alkali and other extreme environments, its physical properties may change. This is the general physical properties of sodium-2-thioalkyl ethane sulfonate. In many fields such as chemical industry and scientific research, it is necessary to understand and grasp its physical properties, so as to be the basis for various applications and research.
    Is Sodium 2-Sulfanylethanesulfonate chemically stable?
    Sodium + 2 - Sulfanylethanesulfonate is also a chemical substance. In order to know whether its chemical properties are determined, it is necessary to investigate the characteristics of its molecules and chemical properties.
    In this compound, the sulfonic acid base (- SO) is determined, and the sulfur atom is firmly integrated with the oxygen atom, so it can be cracked. The sulfonic acid base can make the compound appear in aqueous solution, increasing its solubility, and this property also increases its quality.
    And the sulfur (S-H) phase is active, and it is easy to oxidize the original reaction. If it is in an aerobic environment, the sulfonic acid group is easily oxidized to disulfide (- S - S -). However, in the presence of sulfonic acid, and the temperature, pH and other factors are appropriate, the sulfonic acid group can also maintain phase stability.
    If it is in an acid or a sulfonic acid environment, its chemical properties may be changed. Under the sulfonic acid, the sulfonic acid group may be affected by sulfonic acid, and in the sulfonic acid, the sulfonic acid group may be deoxidized, resulting in the change of the chemical charge and anti-chemical activity of the compound.

    In the ordinary environment of normal, normal, and special effects, Sodium + 2 - Sulfanylethanesulfonate has certain qualitative properties. However, when encountering special components such as oxidation, acid, and acid, their chemical properties are not biochemical.
    What are the synthetic methods of Sodium 2-Sulfanylethanesulfonate?
    There are three ways to make sodium 2-thioethanesulfonate. The first is to use ethanesulfonic acid and sodium sulfide for co-heating. First, take an appropriate amount of ethanesulfonic acid, put it in a heat-resistant container, slowly add sodium sulfide, and add heat. During this period, you must stir frequently to make the two mix evenly. When the temperature is raised to an appropriate degree, the two should start to gradually produce 2-thioethanesulfonate of sodium. This should be controlled at temperature and time to avoid other impurities.
    The second method is to use halogenated ethane and sodium thiosulfate as materials. Take halogenated ethane, put it in a container containing sodium thiosulfate, and add a solvent to make the two mutually soluble. After boiling over a warm fire, the halogen atoms in the halogenated ethane and the sulfur atoms in the sodium thiosulfate combine to form 2-thioethanesulfonate of sodium. The choice of solvent is very important, and it must have good solubility to the second material and do not disturb it.
    The third method is to combine ethylene with sodium bisulfite and sulfur. First put sodium bisulfite in the container, add an appropriate amount of water to dissolve, and form a homogeneous phase. Then add ethylene into it, add sulfur powder, add heat and stir. Ethylene and sodium bisulfite are added together, and sulfur is also added, and finally 2-thioethanesulfonate of sodium is obtained. In this process, the temperature, pressure and material ratio should be carefully controlled to increase the yield and reduce heterogeneity.
    What is the price range of Sodium 2-Sulfanylethanesulfonate in the market?
    Sodium+2-Sulfanylethanesulfonate, the Chinese name is often 2-ethylenesulfonic acid. It can be determined according to common sense because it has not been cut in the market. If this compound is used in a small amount in the laboratory, its quality or refinement will be determined.
    In the usual processing platform, if it is common (such as 95% - 98%), and the package is 100 grams, the package may be between 10 and 100 yuan. If the package is higher, such as 99% or more, the package amount is also the same, and the package may rise to 100 yuan.
    However, if the package is large and large, the cost per kilogram is low, and the cost per kilogram is low, or about 100 to 1,000 yuan. But this all depends on factors such as the true quality, production and demand, market supply and demand, quality requirements, and production volume. In order to know the quality, it is still necessary to transform the product suppliers in order to obtain the quality.