Ethyl 2 Methoxyimino 2 2 Aminothiazole 4 Yl Acetate
quinoline thiophene imidazole thiazole

Ethyl-2-Methoxyimino-2-(2-Aminothiazole-4-Yl) Acetate

    Specifications

    HS Code

    291188

    Chemical Formula C9H11N3O3S
    Molecular Weight 241.27
    Appearance White to off - white powder
    Melting Point 102 - 105 °C
    Solubility In Water Slightly soluble
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone
    Odor Odorless or very faint odor
    Stability Stable under normal conditions
    Ph Aqueous Solution Near neutral
    Purity Typically high - purity (e.g., 98%+)

    As an accredited Ethyl-2-Methoxyimino-2-(2-Aminothiazole-4-Yl) Acetate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

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    General Information
    Where to Buy Ethyl-2-Methoxyimino-2-(2-Aminothiazole-4-Yl) Acetate in China?
    As a trusted Ethyl-2-Methoxyimino-2-(2-Aminothiazole-4-Yl) Acetate 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 Ethyl-2-Methoxyimino-2-(2-Aminothiazole-4-Yl) Acetate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    Ethyl-2-Methoxyimino-2- (2-Aminothiazole-4-Yl) What is the main use of Acetate?
    Ethyl-2-methoxyimino-2- (2-aminothiazole-4-yl) acetate is a crucial chemical raw material in the field of organic synthesis. It has a wide range of uses and is first used in the field of pharmaceutical synthesis.
    In pharmaceutical preparation, this compound is often a key intermediate for the synthesis of various antibacterial drugs. Many cephalosporins are synthesized by its participation. Taking cefixime as an example, ethyl-2-methoxyimino-2- (2-aminothiazole-4-yl) acetate can ingeniously construct the core structure of cefixime through a series of chemical reactions, endowing the drug with excellent antibacterial activity and pharmacological properties, which can effectively fight against infections caused by many bacteria.
    Furthermore, it also plays an important role in the field of pesticide synthesis. It can be used as an important starting material for the synthesis of new insecticides and fungicides. By reacting with other compounds, pesticide products with high insecticidal and bactericidal properties can be produced, which is helpful for the control of pests and diseases in agricultural production, improving the yield and quality of crops, and ensuring the stable development of agriculture.
    In addition, in the field of fine chemicals, ethyl-2-methoxyimino-2- (2-aminothiazole-4-yl) acetate can be used to synthesize special functional materials. Its unique chemical structure provides the possibility to synthesize fine chemicals with specific properties, such as some materials that are responsive to the environment, or materials that exhibit special optical and electrical properties under specific conditions, which contributes to the diversification and high-performance development of fine chemical products.
    Ethyl-2-Methoxyimino-2- (2-Aminothiazole-4-Yl) What are the physical properties of Acetate
    Ethyl - 2 - Methoxyimino - 2 - (2 - Aminothiazole - 4 - Yl) Acetate, Chinese name is often 2 - (2 - aminothiazole - 4 - yl) - 2 - methoxy aminoacetate ethyl ester, is the most important synthetic compound. Its physical properties are specific, let me describe it.
    This compound is often white to white crystalline powder, which is uniform. Its melting properties are usually determined by specific conditions, usually between 100 ° C and 105 ° C. This melting property is particularly important for the determination and improvement of this material. It can be accurately judged according to its phase in the addition process.
    In terms of solubility, Ethyl-2 - Methoxyimino - 2 - (2 - Aminothiazole - 4 - Yl) Acetate exhibits different solubility in multi-layer solubility. For normal solubility, such as methanol and ethanol, it has good solubility and can dissolve with each other to form a uniform solution. This property is advantageous for use as a reactant or medium in the synthesis of reactants, so that it can be fully dispersed in the reactant system and improve the efficiency of the reaction rate. However, in non-soluble materials, such as n-hexane, its solubility is very poor, and it is almost insoluble. This poor solubility property can be used in the preparation step.
    Furthermore, the density of this material also has a specific value, about 1.3 g/cm ³. This density characteristic is related to the calculation of the amount of capacitance, such as the preparation of anti-material materials, storage and so on.
    Its characterization is also worth noting. Under normal conditions, dry and dark conditions, Ethyl - 2 - Methoxyimino - 2 - (2 - Aminothiazole - 4 - Yl) Acetate can maintain phase stability and change the chemical properties. However, if it is exposed to high temperature, high temperature or low light conditions, it may decompose or undergo other reactions, resulting in the deterioration of its properties. Therefore, when using this object in storage, we must pay attention to the control of the environmental conditions to ensure the effectiveness of its products.
    Ethyl-2-Methoxyimino-2- (2-Aminothiazole-4-Yl) What are the synthesis methods of Acetate
    Although "Tiangong Kaiwu" is a masterpiece of ancient science and technology, it involves mostly traditional agricultural and handicraft technologies. At that time, chemical synthesis technology was far from appearing, so it was difficult to directly give the synthesis method of ethyl-2-methoxyimino-2- (2-aminothiazole-4-yl) acetate according to its model. However, the method of modern chemical synthesis can follow the following common paths.
    The starting material is 2-aminothiazole-4-acetic acid and an appropriate halogen, and the 2-aminothiazole-4-acetic acid halide is first prepared. The reaction is carried out in an organic solvent and catalyzed by a base to promote the replacement of hydroxyl groups in the carboxyl group by halogen ions. After
    , the 2-aminothiazole-4-acetic acid halide is reacted with methoxylamine hydrochloride. This step requires the presence of a suitable solvent and base to achieve the introduction of methoxy imino groups. The base can bind the acid and move the reaction equilibrium in the direction of the product.
    Then the halogenated ethane is reacted with the above product. Under basic conditions, the nucleophilic substitution forms the target product ethyl-2-methoxyimino-2 - (2-aminothiazole-4-yl) acetate.
    During the reaction process, the reaction temperature, time and ratio of reactants need to be precisely controlled according to the characteristics of raw materials and products to achieve the best yield and purity. After each step of reaction, extraction, distillation, recrystallization and other means are commonly used to purify to remove impurities and ensure the quality of the product. Although modern synthesis technology is very different from the traditional process of "Tiangong Kaiwu", the concept of precision and regulation may be similar in ancient and modern times.
    Ethyl-2-Methoxyimino-2- (2-Aminothiazole-4-Yl) What are the precautions for Acetate in storage and transportation?
    For ethyl-2-methoxyimino-2 - (2-aminothiazole-4-yl) acetate, pay attention to many matters during storage and transportation. This is an important compound in fine chemicals with unique properties, so storage and transportation should not be ignored.
    When storing, the first environment is dry. Moisture can easily cause adverse reactions such as hydrolysis, which will damage its quality. A well-ventilated and dry warehouse should be selected, away from the place where water sources and moisture converge.
    Temperature is also key. It should be kept at a suitable low temperature to avoid decomposition or deterioration caused by high temperature. Under high temperature, molecular activity increases, chemical reactions are prone to occur, or product failure.
    In addition, protection from light is also indispensable. Light can lead to photochemical reactions, affecting its stability. Containers should be placed in a dark place, or packaged with light-proof materials.
    When transporting, the packaging must be sturdy. Because of its certain chemical activity, the packaging is damaged and easy to leak, causing danger. Choose shock-resistant and pressure-resistant packaging materials to ensure safety during transportation.
    and must be transported separately from oxidants, acids, alkalis, etc. This compound is prone to chemical reactions with them, and mixing may cause accidents.
    When loading and unloading, the operation should be gentle. Avoid violent vibration and impact to prevent packaging damage. Operators should also prepare protective equipment, such as gloves, goggles, etc., to ensure their own safety. < Br >
    All of these are essential for the storage and transportation of ethyl-2-methoxyimino-2- (2-aminothiazole-4-yl) acetate, and compliance can ensure its quality and safety.
    Ethyl-2-Methoxyimino-2- (2-Aminothiazole-4-Yl) What is the market price trend of Acetate
    In the Guanfu market, the price state of a product often changes with time, just like the vagaries of the situation. Today, when it comes to Ethyl - 2 - Methoxyimino - 2 - (2 - Aminothiazole - 4 - Yl) Acetate this product, the trend of its market price is also difficult to avoid such variables.
    In the past, the chemical industry was still booming, and this product was required or should be produced in a specific product. Therefore, although its price was not constant, it was still in the field of observability. At the beginning, the extraction of raw materials and the application of processes were not perfect, resulting in cost control, which was slightly difficult. It is based on the price at that time, or according to the increase or decrease of cost and the amount of supply and demand.
    After that, science and technology are advancing, the process is improved, the raw materials are getting easier and easier, and the production rate is increasing. This is like sailing along the water, the cost is falling, and the supply in the city is gradually increasing. However, the demand side is not stagnant. Or due to the expansion of related industries, the number of users will change between supply and demand. If the growth rate of demand is better than the supply, the price is expected to rise; if the expansion of supply exceeds the rise of demand, the price may be downward.
    In the market, the guidance of policies and changes in the situation are also the main factors affecting the market price. The decree concerns the rules of production and trade, and the current situation may involve the source of raw materials and the smooth transportation. If the policy is conducive to production and the current situation is stable, the price may be stable and decline; conversely, if the policy is tightened, the current situation is turbulent, raw materials are difficult to reach, transportation is blocked, and prices will fluctuate unpredictably, or there may be sharp rises and falls.
    To sum up, the market price trend of Ethyl - 2 - Methoxyimino - 2 - (2 - Aminothiazole - 4 - Yl) Acetate depends on the factors of raw materials, technology, supply and demand, policies and the situation. They are intertwined and affect each other, just like silk threads. To understand the change of its price state, it is necessary to understand these many factors.