Ethyl 3 5 Dimethyl 2 Pyrrolecarboxylate
pyridine pyrrole pyrazine piperidine piperazine

Ethyl 3,5-Dimethyl-2-Pyrrolecarboxylate

    Specifications

    HS Code

    522105

    Chemical Formula C10H13NO2
    Molar Mass 179.216 g/mol
    Appearance Typically a liquid or solid (state may depend on conditions)
    Boiling Point Data may vary, but around [X] °C (approximate value, specific data needed for accuracy)
    Melting Point Data may vary, but around [X] °C (approximate value, specific data needed for accuracy)
    Density Data may vary, but around [X] g/cm³ (approximate value, specific data needed for accuracy)
    Solubility Soluble in some organic solvents like ethanol, dichloromethane etc. (specific details vary)
    Odor May have a characteristic organic odor (description may vary)
    Flash Point Data may vary, but around [X] °C (approximate value, specific data needed for accuracy)
    Purity Common Commercial Grade Typically [X]% (approximate value, specific data needed for accuracy)

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    General Information
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    Frequently Asked Questions

    As a leading Ethyl 3,5-Dimethyl-2-Pyrrolecarboxylate 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 Ethyl 3, 5-Dimethyl-2-Pyrrolecarboxylate?
    Ethyl-3,5-dimethyl-2-pyrrole carboxylate, this substance has a wide range of uses. In the field of organic synthesis, it is often used as a key intermediate. Due to its unique structure, it can construct complex organic molecules through various reaction pathways.
    In the process of pharmaceutical research and development, it can be used as the cornerstone of lead compounds. After modification and optimization, it is expected to create new drugs with specific biological activities to treat various diseases.
    In materials science, or participate in the preparation of special materials. With its reaction characteristics, it endows materials with unique properties, such as optical, electrical and other properties, and has potential applications in electronic and optical device manufacturing.
    In the fine chemical industry, it can be used to synthesize high-end fine chemicals, such as special fragrances, additives, etc., to improve product quality and performance, and to meet the market demand for high-quality fine chemical products.
    In short, ethyl-3,5-dimethyl-2-pyrrocarboxylate has important uses in many fields and is an important chemical substance to promote the development of related fields.
    What are the physical properties of Ethyl 3, 5-Dimethyl-2-Pyrrolecarboxylate?
    Ethyl 3,5 - Dimethyl - 2 - Pyrrolecarboxylate (3,5 - dimethyl - 2 - ethyl pyrrocarboxylate), this material has quite unique properties. Its appearance is often colorless to light yellow liquid, and it looks like a clear spring, clear without losing its elegant color.
    Its boiling point is stable under certain conditions, about within a specific temperature range, just like the needle of the sea, maintaining the equilibrium boundary between the gas and liquid phases of the substance. This boiling point characteristic plays a crucial guiding role in many chemical operations such as separation and purification. It is like a lighthouse for night navigation, indicating the direction of operation.
    Furthermore, its melting point also has a specific value. When the temperature drops to a certain precise scale, the substance will gradually solidify from the flowing state, such as freezing time, giving it the shape of a solid state. Melting point is not only the identification of the material's own characteristics, but also an important basis for identifying this compound, just like a human fingerprint, unique.
    Solubility is also one of its important physical properties. In common organic solvents, such as ethanol, ether, etc., it is like a wanderer returning home, which can dissolve well and blend with solvent molecules to form a uniform and stable system. In water, its solubility is completely different, just like the incompatibility of oil and water, showing another scene. This property is closely related to the hydrophobicity of the groups in the molecular structure.
    In addition, its density is relatively stable, and the ratio of mass to volume is constant. This property is of great significance in many industrial production and scientific research measurement links, just like the weight of the balance, providing reliable support for accurate measurement. Ethyl 3,5 - Dimethyl - 2 - Pyrrolecarboxylate These physical properties are intertwined to describe the unique physical appearance of the compound, which occupies an indispensable position in the research and application of organic chemistry.
    What are the chemical synthesis methods of Ethyl 3, 5-Dimethyl-2-Pyrrolecarboxylate
    Ethyl 3,5 - Dimethyl - 2 - Pyrrolecarboxylate is 3,5 - dimethyl - 2 - ethyl pyrrole carboxylate, and its synthesis method is as follows:
    First, it can be obtained by reacting 3,5 - dimethyl pyrrole with ethyl chloroformate under the action of a base. The base can be selected from potassium carbonate, etc. During the reaction, 3,5 - dimethyl pyrrole and base are dissolved in a suitable solvent such as acetonitrile, and ethyl chloroformate is slowly added dropwise at low temperature. After the dropwise addition is completed, it is warmed to a suitable temperature and reacted for a certain period of time. In this process, attention should be paid to the precise control of the reaction temperature. If the temperature is too high, it may trigger side reactions, reducing the purity and yield of the product; if the temperature is too low, the reaction rate will be slow and take too long. At the same time, the dripping speed should also be paid attention to. Too fast dripping may lead to too high local concentration, which is not conducive to the uniform progress of the reaction.
    Second, 2,4-pentanedione is used as the starting material, and cyanoacetamide is first reacted with cyanoacetamide to generate the corresponding pyrrole derivative, and then it is prepared by esterification reaction with ethanol catalyzed by concentrated sulfuric acid. In the first step of the reaction, it is crucial to control the proportion of the reaction material. If the proportion is not correct, other isomers may be formed In the esterification reaction stage, concentrated sulfuric acid is used as a catalyst, and the dosage needs to be accurate. If the dosage is too small, the catalytic effect is not good, and the reaction is difficult to be fully carried out; if the dosage is too large, it may lead to side reactions such as carbonization. And after the reaction, the product needs to be separated and purified. Common methods include column chromatography, recrystallization, etc., to obtain high-purity ethyl 3,5-dimethyl-2-pyrrocarboxylate.
    Ethyl 3, 5-Dimethyl-2-Pyrrolecarboxylate What are the precautions in storage and transportation?
    Ethyl 3,5 - Dimethyl - 2 - Pyrrolecarboxylate is also an organic compound. During storage and transportation, many matters need to be paid attention to.
    When storing, the temperature and humidity of the environment should be the first priority. This compound should be placed in a cool, dry and well-ventilated place to prevent deliquescence due to excessive humidity, or damage to its stability due to excessive temperature, causing decomposition and other changes. If the temperature is out of control, it may cause changes in the molecular structure and damage the quality and characteristics of the compound.
    Furthermore, the storage place should be kept away from fire, heat and oxidants. Due to its flammability, it is easy to cause combustion in case of open flames and hot topics, and contact with oxidants may trigger violent reactions, resulting in danger. It needs to be stored separately from oxidizing substances to ensure safety.
    During transportation, the packaging must be sturdy. Appropriate packaging materials must be used to ensure that the compound does not leak during transportation bumps. If the packaging is damaged, not only will the compound be lost, but its leakage may also cause harm to the environment and personnel.
    At the same time, the transportation vehicle also needs to be properly selected and maintained. The transportation conditions of the vehicle should be ensured to be stable to avoid excessive vibration and temperature fluctuations affecting the compound. And transportation personnel should be familiar with the characteristics of the compound and emergency treatment methods. In case of emergencies, they can respond properly in time to ensure transportation safety. In this way, Ethyl 3,5-Dimethyl-2-Pyrrolecarboxylate can be kept stable during storage and transportation to avoid risks.
    What is the market price of Ethyl 5-Dimethyl-2-Pyrrolecarboxylate?
    What you are inquiring about is "the approximate market price of Ethyl 3,5 - Dimethyl - 2 - Pyrrolecarboxylate". However, this is not an easy matter, and its price is determined by many factors.
    The market situation of this product, the source and price of raw materials, are the main reasons. If the raw materials required for its preparation are easy to obtain and cheap, the price of the finished product may decrease; on the contrary, if the raw materials are rare and expensive, the price must rise.
    Furthermore, the production method and technology also affect its price. If there is a sophisticated and efficient process, the cost can be reduced, and the market price may be close to the people; if the production process is complicated and expensive, the price will be high.
    The relationship between supply and demand in the market is also very important. If there are many seekers and there are few suppliers, the price will rise; if the supply exceeds the demand, the price will fall.
    In addition, the region where you are located is also related to the price. Different places have different taxes and logistics costs, resulting in different prices.
    However, it is difficult to determine the exact price after checking the past market conditions. Generally speaking, in the current market, the price per gram may be between tens and hundreds of gold, but this is only an approximate number. The actual price depends on the specific business conditions, quality and transaction volume. To know the exact price, you should consult the merchant of chemical raw materials, market survey agency or check it in detail on the relevant trading platform.