Methyl Tetrahydro 4 Oxo 3 Thiophenecarboxylate
quinoline thiophene imidazole thiazole

Methyl tetrahydro-4-oxo-3-thiophenecarboxylate

Taiy Chemical

    Specifications

    HS Code

    693952

    Chemical Formula C6H8O3S
    Molar Mass 160.19 g/mol
    Physical State Liquid (usually)
    Appearance Clear to pale - colored liquid
    Boiling Point Approximately [value] °C (data may vary depending on purity and conditions)
    Solubility Soluble in organic solvents like ethanol, acetone
    Density [value] g/cm³ (at a specific temperature)
    Flash Point [value] °C (flammability related property)
    Vapor Pressure [value] mmHg (at a given temperature)
    Odor Characteristic organic odor
    Refractive Index [value] (at a specific wavelength and temperature)

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    General Information
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    Frequently Asked Questions

    As a leading Methyl tetrahydro-4-oxo-3-thiophenecarboxylate 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 Methyl tetrahydro-4-oxo-3-thiophenecarboxylate?
    Methyltetrahydro-4-oxo-3-thiophene carboxylic acid ester, this is an organic compound. It has a wide range of uses and is often used as a key intermediate in the field of organic synthesis.
    First, in the field of pharmaceutical chemistry, it can be converted into a molecular structure with specific biological activities through a series of chemical reactions, and then used to create new drugs. Take the research and development of some antibacterial and anti-inflammatory drugs as an example. It may be an important starting material. After delicate chemical modification, it can endow the drug with better efficacy and safety.
    Second, in the field of materials science, it can participate in the synthesis of polymer materials. With its unique chemical structure, it introduces special properties to the material, such as improving the stability, flexibility or optical properties of the material, and helps to develop new functional materials, which are used in many fields such as electronic devices and optical instruments.
    In addition, it also plays an important role in the field of fine chemicals. It can be used to prepare fine chemicals such as special fragrances and additives to meet different industrial and daily needs. After a specific reaction path, it is converted into substances with unique aroma or functionality, which are used in the production process of fragrance preparation, food additives or industrial additives. Methyltetrahydro-4-oxo-3-thiophene carboxylate plays an important role in many fields due to its unique chemical properties, providing a key foundation for the development of organic synthesis and related industries.
    What are the physical properties of Methyl tetrahydro-4-oxo-3-thiophenecarboxylate?
    Methyltetrahydro-4-oxo-3-thiophene carboxylate, this substance is one of the organic compounds. Its physical properties are particularly important and are related to many applications.
    First of all, the appearance is usually colorless to light yellow liquid, with a clear texture and a rather shiny appearance. Under the light, the light and shadow flow, which is quite flexible. This appearance characteristic can be used as a basis for preliminary discrimination in practical applications.
    When it comes to the boiling point, it is about a specific temperature range. This value may vary slightly depending on the experimental conditions. The boiling point is of great significance, which is related to the state change of the substance during the heating process. It is a key parameter in chemical production, separation and purification. If it needs to be separated from the mixture, accurate control of the boiling point is essential.
    Melting point also has its inherent value. When the solid and liquid states change, the melting point is the key node. Knowing the melting point helps to determine the physical form of the substance at different temperatures, providing an important reference for storage and transportation. If the storage environment temperature is higher than the melting point, the substance may be in a liquid state, its fluidity and storage container requirements need to be considered; if it is lower than the melting point, the stability of the solid state needs to be paid attention to.
    Density is also one of the important physical properties. Its density is specific, reflecting the mass of the substance per unit volume. When it comes to mixing, blending, etc., density data can be used to accurately calculate the dosage of each substance to ensure the uniformity and stability of product quality.
    In terms of solubility, methyltetrahydro-4-oxo-3-thiophene carboxylate exhibits good solubility in specific organic solvents, but poor solubility in water. This characteristic determines its application range in different solvent systems. In the organic synthesis reaction, a suitable solvent can be selected according to its solubility to promote the smooth progress of the reaction and improve the yield and selectivity of the reaction.
    In addition, its unique smell, although not pungent and unpleasant, is also recognizable. Although odor does not determine the nature of its core application, in some fields where odor is strictly required, such as flavors, food additives, and other industries, this property may affect its use.
    What are the synthetic methods of Methyl tetrahydro-4-oxo-3-thiophenecarboxylate?
    The synthesis of methyl tetrahydro-4-oxo-3-thiophene carboxylic acid ester is an important matter in chemical preparation. To make this substance, common methods have multiple ends.
    First, it can be initiated by specific sulfur-containing and oxygenated compounds. First, a suitable thiophene derivative is taken, and a carbonyl group is introduced at a specific position on the thiophene ring through a delicate oxidation reaction. This step requires fine regulation of the reaction conditions, such as temperature, pH and catalyst dosage, so that the oxidation check point is accurate. Then, the resulting product and alcohol are esterified under acid catalysis to form an ester group. In this process, the strength and dosage of acid, as well as the reaction time, are all related to the yield and purity.
    Second, the strategy of constructing thiophene rings is also a good method. Select appropriate sulfur, carbon and oxygen-containing raw materials to construct thiophene rings through condensation reaction, and introduce the required carbonyl and esterified groups into the rings. During the reaction, the choice of solvent is very critical, and different solvents have a great impact on the reaction rate and selectivity. After the thiophene ring structure is formed, the esterification step is performed to generate the target product methyl tetrahydro-4-oxo-3-thiophene carboxylate.
    Third, the concept of biosynthesis can also be used for reference. With the help of a specific enzyme or microbial system, its biocatalytic activity is used to achieve the transformation of related compounds under mild conditions. Although this approach has the advantages of green environmental protection, it requires quite high requirements for the cultivation and regulation of biological systems. It is necessary to accurately grasp the microbial growth environment and enzyme activity conditions in order to effectively synthesize the target product.
    All this synthesis method has advantages and disadvantages. It is necessary to consider the availability, cost, yield and purity of raw materials and many other factors according to actual needs.
    What is the price range of Methyl tetrahydro-4-oxo-3-thiophenecarboxylate in the market?
    Methyltetrahydro-4-oxo-3-thiophene carboxylic acid ester, which is a key organic compound in the field of fine chemicals, is widely used in many industries such as medicine, pesticides, and materials.
    However, in the market, its price fluctuates frequently, often due to raw material costs, production processes, market supply and demand and many other factors. In the past, when raw materials were abundant and demand was stable, their prices were relatively low. If raw materials are scarce, such as key raw materials production is reduced due to abnormal climate in a particular year, or demand is suddenly increased due to the expansion of new application fields, their prices will rise.
    According to the records of past transactions and the market conditions of commercial establishments, the price per gram of this compound can be only a few pennies at low times, and tens of pennies at high times. Generally speaking, under normal market conditions, the price per gram is mostly between ten and twenty pennies. However, it needs to be understood that this is only a rough range. The actual price should be determined according to the real-time market conditions. If the buyer wants to obtain an accurate price, he needs to go to the market in person and consult all merchants in detail to obtain the exact number.
    What are the storage conditions for Methyl tetrahydro-4-oxo-3-thiophenecarboxylate?
    Methyl tetrahydro-4-oxo-3-thiophene carboxylic acid ester, this is a fine chemical. Its storage conditions are crucial, which is related to the quality and stability of this product.
    According to the concept of "Tiangong Kaiwu", everything follows the laws of nature, and this chemical is no exception. First and foremost, choose a cool and dry storage place. Due to temperature and humidity, it has a great impact on it. If it is placed in a high temperature place, it may cause chemical reactions to occur, resulting in poor quality; and if the humidity is too high, it is easy to cause moisture or adverse reactions such as hydrolysis.
    Furthermore, the storage place should be well ventilated. Good ventilation can prevent the accumulation of harmful gases and help to maintain a suitable environment. And it should be kept away from fire sources and oxidants. This chemical has certain chemical activity. In case of fire or oxidants, it is afraid of violent reaction and endangers safety.
    Also pay attention to the choice of storage containers. It is advisable to use containers with good corrosion resistance and sealing. In this way, it can prevent the leakage of chemicals and prevent their contact with external substances to ensure their purity and stability.
    Daily management should not be slack. It is necessary to regularly check the storage status to see if the container is damaged and whether the environmental conditions are suitable. In this way, the quality of methyltetrahydro-4-oxo-3-thiophene carboxylate can be guaranteed.