Products

(2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid

    Specifications

    HS Code

    709560

    Chemical Formula C5H10N2O5S
    Molecular Weight 206.21 g/mol
    Appearance Typically a solid
    Chirality Has (2S,3S) stereochemistry
    Functional Groups Amino, methyl, keto, azetidine, sulfonic acid

    As an accredited (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 100g of (2S,3S)-3 - Amino - 2 - Methyl - 4 - Oxo - 1 - Azetidinesulfonic Acid in sealed plastic bags.
    Storage (2S,3S)-3 - Amino - 2 - Methyl - 4 - Oxo - 1 - Azetidinesulfonic Acid should be stored in a cool, dry place. Keep it away from heat sources, direct sunlight, and moisture. Store in a tightly closed container to prevent contamination. Ensure the storage area is well - ventilated. Avoid storing with incompatible substances, and label the container clearly for easy identification and safety.
    Shipping (2S,3S)-3 - Amino - 2 - methyl - 4 - oxo - 1 - azetidinesulfonic acid is shipped in sealed, properly labeled containers. Special care is taken to ensure stability during transit, following all relevant chemical shipping regulations.
    Free Quote

    Competitive (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid prices that fit your budget—flexible terms and customized quotes for every order.

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    (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid
    General Information
    Historical Development
    (The following text is written in classical Chinese style about the historical development of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclic butanesulfonic acid products)
    Fu (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclic butanesulfonic acid. The beginning is hidden among all things and is not known to the public. At the beginning, the academic community was committed to the wonders of various compounds, but they did not get a glimpse of their true appearance.
    However, as time goes on, the heart of the researcher becomes stronger, and the progress of the art gradually becomes clearer. The sages have worked hard and tried their best to explore repeatedly on the road of fusion. Or through all kinds of hardships, or through all kinds of hardships, there is finally a wise man who can find a way to make this thing.
    Since then, everyone has worked together to optimize the method, clarify its nature, and study its use. In the field of medicine, it gradually shows its wonders; in the genus of chemical industry, it also adds new colors. The development of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azabutane sulfonic acid, which is little known and widely used by humans, is actually the result of the efforts of researchers and is also one of the evidences of scientific evolution.
    Product Overview
    There is now a product named (2S, 3S) -3 -amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid. It is a key substance in chemical research. This compound has a unique structure and is connected by specific atoms in a precise way. Its properties are unique, and under specific conditions, it exhibits special reactivity.
    In terms of its use, it is of great value in many fields. In pharmaceutical research and development, it may be used as a key intermediate to help create new drugs to relieve diseases. In materials science, it may have a positive effect on material performance improvement.
    Our researchers should study this substance in detail, explore its mysteries, and promote the development of the chemical field for the benefit of human well-being. They should make unremitting efforts to make more breakthroughs in the research of this substance.
    Physical & Chemical Properties
    (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid, the physical and chemical properties of this substance are related to our chemical research. Its properties, or a specific form, have its own inherent color and state under normal conditions. Its melting point and boiling point are key parameters that determine the transformation of its state, reflecting the strength of intermolecular forces.
    In terms of solubility, it varies in various solvents, or is easily soluble in water, or has a specific affinity with organic solvents. This property is related to the polarity of the molecule, and the existence of polar groups affects its dispersion in different solvent environments.
    Stability is also an important consideration. In the air, whether it is easy to react with oxygen and water is related to storage and use. In terms of chemical activity, amino, carbonyl and other functional groups endow it with unique reactivity, or can participate in nucleophilic, electrophilic and other reactions, which may have potential applications in the field of organic synthesis. In-depth exploration of its physical and chemical properties can lay a solid foundation for subsequent research and application.
    Technical Specifications & Labeling
    The technical specifications and identification (product parameters) of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid are related to the technical specifications of this compound, and the preparation process is the first priority. When preparing, it is necessary to use an accurate ratio of raw materials and go through a multi-step reaction. The purity of raw materials must be high, and the reaction conditions must also be strictly limited. Parameters such as temperature, pressure, and reaction time must be carefully controlled. Temperature rise or fall can cause reaction deviation, and the same is true for pressure changes.
    As for the identification (product parameters), when its physical properties, such as appearance should be [specific appearance], the melting point and boiling point should also be accurately measured and marked. In terms of chemical properties, it is necessary to show its solubility in different solvents and the reaction characteristics with common reagents. In this way, complete technical specifications and identification (product parameters) are obtained to meet the quality requirements of this product.
    Preparation Method
    The method of preparing (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid is related to the raw materials and production process, reaction steps and catalytic mechanism. First take a raw material, according to a specific ratio, at a suitable temperature and pressure, into the reactor. Control the temperature and stir quickly. When the reaction is initially completed, adjust the pH value to promote its conversion. Then add a catalyst to increase the rate of growth and yield. After the reaction is completed, the product is obtained through separation and purification steps. The selection of raw materials is related to purity and cost; the control of reaction steps determines the quality of the product; the beauty of the catalytic mechanism is related to efficiency. This method of making, step by step, is the key to get a good product.
    Chemical Reactions & Modifications
    The anti-modification of (2S, 3S) - 3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid is of great importance. This compound has special properties, and its degradation is reversed.
    In the case of multiple reactions, it is necessary to precisely control the components in order to obtain the ideal compound. For example, the degree of resistance and catalysis are very significant. The research shows that the appropriate catalysis can greatly improve the reaction rate, and can lead the reaction to the direction of the reaction period.
    Furthermore, the modification of this compound aims to give it better properties. To increase its quality or improve its solubility is of great importance to the research. Through ingenious modification, specific bases can be introduced into it to achieve the purpose of modification. In addition, in-depth exploration of its modification can expand the application of this compound.
    Synonyms & Product Names
    (2S, 3S) - 3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, the same name and trade name of this product are quite crucial. The same name is a well-known name in the academic and industry, which can help all scholars communicate accurately. The trade name is related to market circulation and is used by merchants to highlight their characteristics.
    I have been studying this product for a long time, and I know that its same name is smooth in academic exchanges, and all researchers know what it means when they hear it. The trade name also has a special contribution in the market, which can make this product stand out. Such as the ancient medicines, each has a scientific name and common name, scholars study pharmacology according to the scientific name, and the city people buy medicines by common name to treat diseases. (2S, 3S) - 3-Amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid is the same name and trade name, so it is used in scientific research and market, each has its own use, complements each other, and promotes the development of this thing together.
    Safety & Operational Standards
    The safe production and operation of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid is the key to our chemical research. This substance has unique properties and must be strictly observed in the experimental operation to ensure safety.
    At the beginning of the operation, it is necessary to read the relevant information carefully to understand its physical and chemical properties. (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid has specific reactivity and may react violently when encountering certain substances. Therefore, in the operation room, it should be avoided to mix with incompatible chemicals.
    The experimental site must be well ventilated, and if necessary, a gas detection device should be prepared to monitor the environment in real time. During operation, researchers should wear appropriate protective equipment, such as protective clothing, gloves, goggles, etc., to prevent contact or inhalation of this substance and endanger their own safety.
    The weighing and transfer steps should be stable and accurate to prevent substances from spilling. If it is accidentally spilled, it should be cleaned up immediately according to the established procedures, and must not be idle. During the reaction process, closely monitor temperature, pressure and other parameters, due to slight deviations or accidents.
    Storage should also not be ignored. (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid should be placed in a dry and cool place, away from fire sources and oxidants. At the same time, the container must be well sealed and the material information must be clear.
    In terms of accident emergency response, a comprehensive plan should be formulated. In the event of a leak or fire, researchers can quickly act according to the plan to minimize the damage. In this way, the experiment should be safe and orderly, and the road of scientific research should be smooth.
    Application Area
    (2S, 3S) - 3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid, its application field is very critical. In the field of pharmaceutical research and development, or can be used as a key intermediate to help synthesize specific drugs, cure various diseases, and save people's pain. In the chemical industry, with its unique chemical properties, or can participate in the preparation of special materials, the material has extraordinary properties. In agriculture, it can also be properly transformed into a plant growth regulator to promote crop growth and increase yield. Or in other hidden fields, it can play a wonderful role, promote the progress and innovation of various industries, and bring many benefits to the world.
    Research & Development
    I am committed to the research of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid. This compound has unique properties and has great potential in the fields of medicine and chemical industry. At the beginning, I explored its synthesis path, tried many times, and encountered many difficulties. The selection of raw materials and the control of reaction conditions all need to be carefully considered. After repeated research, we can finally optimize the method to improve the yield and purity. Then, study its characteristics and analyze the relationship between structure and activity. It is hoped that its mechanism of action will be clarified, paving the way for subsequent applications. Looking at it now, the research results of this compound are gradually abundant, and it is expected to shine in related industries in the future, contributing to scientific research progress and industrial development.
    Toxicity Research
    The toxicity study of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid is related to this chemical, and our generation should explore it in detail. Many poisons in the past were not found harmful at first, but gradually became harmful later. This compound also needs to be treated with caution.
    Examine its molecular structure in detail, or affect biochemical processes in organisms. It enters the organism, or interacts with key proteins and enzymes, disrupting normal physiological functions. Or in the process of cell metabolism, hindering energy generation and material synthesis.
    Although there is no conclusive evidence of giant harm, it should not be taken lightly. Experimental research should involve cells, animals and other levels to observe its effects on growth, development and reproduction. It is also necessary to pay attention to the fate of this compound in the environment to prevent ecological disasters. In this way, its toxicity can be clarified and the safety of people and things can be guaranteed.
    Future Prospects
    I try to research (2S, 3S) -3 - Amino - 2 - Methyl - 4 - Oxo - 1 - Azetidinesulfonic Acid. Its unique nature, in the field of chemical medicine, has great potential.
    Looking at the world today, science and technology are changing, and chemical industries are also booming. The characteristics of this compound make it possible to shine in the future. Or it can be used in the development of new drugs to solve the suffering of people's diseases; or it can emerge in the material innovation and help the performance of materials soar.
    Although there may be thorns in the road ahead, those of our generation of scientific researchers should have a strong heart. With diligence as the wing, with wisdom as the lamp, explore its subtleties and tap its potential. Looking forward to the future, we can use this compound to add to the industry and paint a splendid scene for the future, living up to our expectations for the future.
    Where to Buy (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid in China?
    As a trusted (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid 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 (2S,3S)-3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the chemical structure of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
    (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is a kind of organic compound. To understand its chemical structure, let me explain in detail.
    The core of this compound is azacyclobutane, which consists of a nitrogen atom and three carbon atoms to form a quaternion ring. In the first position of the ring, there is a sulfonic acid group (-SO-H). In the sulfonic acid group, the sulfur atom is connected to three oxygen atoms, one of which is connected to the sulfur by a double bond, and the other two oxygen atoms are each negatively charged, and form an ionic bond with the hydrogen atom. This structure imparts a certain acidity and water solubility to the compound.
    In the second position of the ring, there is a methyl group (-CH-H) connected. The methyl group is a group after the removal of a hydrogen atom from methane. It is composed of one carbon atom and three hydrogen atoms. It is an alkyl group, which is relatively stable and affects the spatial structure and properties of the compound.
    At the 3rd position of the ring, there is an amino group (-NH ²) connected. The amino group is composed of a nitrogen atom and two hydrogen atoms. The nitrogen atom has a pair of lone pairs of electrons, which makes it alkaline and can react with acids.
    At the 4th position of the ring, it is a carbonyl group (-C = O). The carbon atom and the oxygen atom in the carbonyl group are connected by a double bond. This structure makes the compound have certain polarity and reactivity, and can participate in many chemical reactions, such as nucleophilic addition.
    In summary, the chemical structure of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid consists of an azacyclobutane ring as the core, which is connected to the sulfonic acid group, methyl group, amino group and carbonyl group, and the interaction of each group endows the compound with unique chemical properties and reactivity.
    What are the main uses of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
    (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is widely used. In the field of medicine, it is a key intermediate for the preparation of specific antibiotics. By participating in the construction of the molecular structure of antibiotics, it is of great significance to improve the antibacterial activity of antibiotics and expand the antibacterial spectrum. Its unique structure can precisely fit with the key targets in bacteria, effectively inhibit the growth and reproduction of bacteria, and provide a powerful weapon against bacterial infections and diseases.
    In the chemical industry, as a special organic synthesis raw material, it can synthesize compounds with unique properties. For example, it is used to prepare some functional polymer materials, endowing the materials with special adsorption, separation or catalytic properties, and is widely used in all aspects of chemical production to improve product quality and production efficiency.
    In scientific research and exploration, it is an important chemical reagent. Researchers use its unique structure and properties to carry out research in organic synthesis methodology, medicinal chemistry and other fields, which helps to deeply explore the chemical reaction mechanism, develop novel synthesis routes, and provide key support for innovative drug research and development and new material creation. With its unique structure and properties, this substance plays a key role in medicine, chemical industry, scientific research and other fields, and promotes the continuous development and progress of related fields.
    What are the preparation methods of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
    The methods for preparing (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid are numerous and delicate. In the past, one of the methods for preparing this compound started from a specific raw material and was obtained by successive conversion through many delicate reaction steps. First, a certain raw material is taken, and specific reaction conditions are applied to make it undergo specific chemical changes, such as in a suitable solvent, catalyzed by a specific catalyst, and after several hours, it is formed into an intermediate product. This intermediate product is then reacted in a different way, or under different temperatures and pH environments, interacts with specific reagents, and generates new changes, gradually building the structural framework of the target compound.
    There are also other methods, using different starting materials as the foundation and following different reaction paths. This raw material undergoes a series of carefully designed reactions in a specific reaction system, such as acylation, substitution, etc., and subtly introduces the required functional groups to achieve the purpose of constructing the target compound. And each step of the reaction requires precise control of the reaction conditions, such as temperature, time, and the proportion of reactants. If there is a slight difference, the reaction may deviate from the expected direction and generate non-target products.
    Another method of preparation is to refer to the experience of predecessors and combine modern chemical technology to improve the traditional method. In the traditional reaction step, either replace the more efficient catalyst or optimize the reaction solvent system to make the reaction more smooth and improve the purity and yield of the product. These preparation methods have their own strengths, which are obtained by chemists through repeated research and practice. They provide a variety of ways to obtain (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid.
    What are the physicochemical properties of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid?
    (2S, 3S) - 3-amino-2-methyl-4-oxo-1-azacyclobutanesulfonic acid, which is an organic compound. It has many physical and chemical properties, which are described in detail below.
    Looking at its physical properties, it may be white to off-white crystalline powder under normal conditions. After careful inspection, it has uniform texture and pure color. This substance can show a certain solubility in water. Due to the molecular structure containing sulfonic acid groups, this group is hydrophilic, so it is soluble in water, but the solubility is also affected by temperature and other factors. When the temperature rises, the thermal motion of the molecule intensifies, and its solubility in water may increase; when it cools down, some precipitation may occur.
    When it comes to chemical properties, amino groups are basic and can neutralize with acids. When encountering strong acids such as hydrochloric acid, amino groups can bind protons to form positively charged ions, which may affect their existence and activity in specific environments. The sulfonic acid group is highly acidic, capable of ionizing hydrogen ions in aqueous solutions, making the solution acidic. And the presence of carbonyl groups in the compound gives it the possibility of reactions such as nucleophilic addition. In case of nucleophilic reagents, the nucleophilic part of the reagent may attack carbonyl carbons, triggering a series of chemical reactions, or causing molecular structure changes, resulting in the derivation of different compounds. These are all important physicochemical properties of (2S, 3S) -3 -amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid, which are of great significance in organic synthesis and other fields.
    What is the price range of (2S, 3S) -3-Amino-2-Methyl-4-Oxo-1-Azetidinesulfonic Acid in the market?
    I have not heard the exact price of (2S, 3S) -3-amino-2-methyl-4-oxo-1-azacyclobutane sulfonic acid in the market. However, the price of this drug often varies due to many reasons, such as the complexity of the process, the amount of raw materials, the supply and demand trend, regional differences, poor quality, etc.
    If the process is difficult, the purity and conditions of the raw materials are strict, and sophisticated technology and equipment are required, the price will be high. If the raw materials are scarce or difficult to obtain, the supply will be small and the price will rise. If the market demand for this product is strong and the supply is limited, the price will also rise. Different regions, due to different economic, tax, logistics costs, prices are also different. The quality is excellent, the price is often higher than the inferior.
    To know the exact price of this product, you should consult chemical raw material suppliers, pharmaceutical raw material trading platforms, or industry experts. They often know the real-time market, and can tell the exact price range.