5 Thiazolecarboxylic Acid 2 Ethyl 4 Methyl
quinoline thiophene imidazole thiazole

5-thiazolecarboxylic acid, 2-ethyl-4-methyl-

    Specifications

    HS Code

    685154

    Name 5-thiazolecarboxylic acid, 2-ethyl-4-methyl-
    Molecular Formula C7H9NO2S
    Molecular Weight 171.217 g/mol
    Appearance Solid (predicted)
    Boiling Point 307.3±27.0 °C at 760 mmHg (predicted)
    Melting Point 139 - 141 °C
    Flash Point 139.6±23.7 °C (predicted)
    Density 1.245±0.06 g/cm3 (20 °C, 760 mmHg) (predicted)
    Pka 3.57±0.10 (predicted)
    Solubility Soluble in organic solvents (estimated)

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    General Information
    Where to Buy 5-thiazolecarboxylic acid, 2-ethyl-4-methyl- in China?
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    Frequently Asked Questions

    As a leading 5-thiazolecarboxylic acid, 2-ethyl-4-methyl- 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 physical properties of 5-thiazolecarboxylic acid, 2-ethyl-4-methyl?
    5-Hydroxytryptamine acid, 2-methyl-4-ethyl, this is a more complex organic compound. Its physical properties are as follows:
    Its morphology is usually white to light yellow crystalline powder, which is like a collection of fine grains, and its fine luster can be seen under light. Such appearance characteristics are convenient for observation and processing in many experimental or industrial scenarios.
    When it comes to solubility, it has some solubility in water, but the solubility is limited. In polar organic solvents, such as ethanol and acetone, the solubility is relatively better. This property is related to the polar groups in the molecular structure, and these polar parts interact with the polar solvent molecules to promote their dissolution. This property is crucial in the extraction, separation and preparation of solutions containing the substance. A suitable solvent can be selected according to its solubility to achieve effective extraction or preparation of a solution of a specific concentration.
    Its melting point is also an important physical property. After determination, the melting point is in a certain temperature range. The stability of the melting point reflects the purity of the substance. If it contains impurities, the melting point may be reduced and the melting range widened. Therefore, by accurately measuring the melting point, the purity of the substance can be evaluated, which is of great significance in the quality control process.
    Furthermore, the density of the substance is relatively fixed. This property has reference value when involving mixed systems or applications related to fluid mechanics. For example, when designing a fluid delivery system involving the substance, its density needs to be considered to ensure the stable operation of the system.
    In addition, its volatility is extremely low, and it rarely evaporates into the air at room temperature and pressure. This characteristic makes it convenient for practical operation without excessive worry about loss due to volatilization or environmental pollution under normal storage and use conditions.
    What are the chemical properties of 5-thiazolecarboxylic acid, 2-ethyl-4-methyl?
    The chemical properties of 5-methoxycinnamic acid and 2-ethyl-4-methyl are as follows:
    5-methoxycinnamic acid, which has a benzene ring and an unsaturated carboxyl group structure. Because it contains carboxyl groups, it can neutralize with bases, such as reacting with sodium hydroxide to form corresponding carboxylate and water. And because it contains carbon-carbon double bonds, it can undergo addition reactions, such as addition with bromine water, to fade bromine water; it can also undergo oxidation reactions, which can be oxidized by strong oxidants such as acidic potassium permanganate solution. At the same time, benzene rings can undergo substitution reactions, such as halogenation, nitrification, etc.
    2-ethyl-4-methyl, this organic substance contains an alkyl structure. Usually the chemical properties are relatively stable, but in the presence of high temperature, light or catalyst, the alkyl group can undergo a substitution reaction, such as reacting with chlorine under light, and the chlorine atom replaces the hydrogen atom on the alkyl group. Because it is a hydrocarbon, it can burn in oxygen, and an oxidation reaction occurs to generate carbon dioxide and water. When burning, the flame is bright and accompanied by black smoke, because of its high carbon content. And the substance is insoluble in water, has a lower density than water, and can float on the water surface. Its molecular structure determines that it can be used as an organic solvent, has good solubility to some organic matter, and can dissolve some non-polar or weakly polar substances such as oils and resins.
    What are the main uses of 5-thiazolecarboxylic acid, 2-ethyl-4-methyl-?
    The main uses of serotonin, 2-methyl-4-ethyl, are in the fields of medicine and chemical industry, and each has its own unique effects.
    In medicine, serotonin has extraordinary effects. It is a key precursor to serotonin biosynthesis. Serotonin regulates many important physiological processes such as mood, sleep, and appetite in the human nervous system. When the body's serotonin levels are out of balance, it may lead to conditions such as depression, anxiety, and sleep disorders. Therefore, serotonin can be used as a dietary supplement to help increase serotonin levels, relieve symptoms of depression and anxiety, and improve sleep quality. Some studies have shown that it also has certain preventive and therapeutic effects on migraine, or because serotonin can regulate the tension of cerebrovascular vessels, 5-hydroxytryptamine can reduce migraine attacks by increasing serotonin levels.
    In the chemical industry, 2-methyl-4-ethyl also plays an important role. It is often used as an intermediate in organic synthesis. With its unique chemical structure, it can participate in various organic chemical reactions for the synthesis of many high-value-added fine chemicals. For example, in some fragrance synthesis processes, it can be used as a key raw material to give fragrances their unique aroma and chemical stability. In the field of pesticide synthesis, pesticide molecular structures with high insecticidal and bactericidal activities can be constructed through specific reaction paths, which can contribute to the prevention and control of pests and diseases in agricultural production. In addition, in the field of polymer material synthesis, it can participate in polymerization reactions, which have a significant impact on the properties of polymers, such as mechanical properties and thermal stability, and help to prepare better polymer materials, which are widely used in packaging, construction, automotive and other industries.
    What is the preparation method of 5-thiazolecarboxylic acid, 2-ethyl-4-methyl-?
    To prepare 5-methoxyfuroic acid, 2-ethyl-4-methyl, you can follow the following steps.
    First take an appropriate amount of starting material, which needs to be carefully selected to ensure its purity and quality, in order to lay a good foundation for subsequent reactions. Then, place the starting material in a suitable reaction vessel, which must be able to withstand the temperature and pressure required for the reaction, and do not chemically react with the reactants.
    Add specific reagents and catalysts. The amount of reagents and the activity of the catalyst have a great impact on the reaction and must be precisely controlled. Under suitable temperature and pressure conditions, start the reaction. The temperature and pressure need to be carefully adjusted according to the characteristics of the reaction, so that the reaction can proceed at the optimal rate.
    During the reaction process, close monitoring of the reaction process can be used by means such as chromatographic analysis to gain insight into the degree of reaction and the formation of the product. In case of abnormalities, adjust the reaction conditions in time to ensure that the reaction advances in the expected direction.
    When the reaction is completed, the product may contain impurities. At this time, separation and purification operations need to be carried out. Extraction, distillation, recrystallization and other methods can be used to remove impurities to obtain pure 5-methoxyfuric acid and 2-ethyl-4-methyl products. During extraction, it is crucial to select the right extractant. During distillation, pay attention to temperature control, and during recrystallization, pay attention to the selection of solvents and crystallization conditions, so that high-purity products can be obtained. The entire preparation process requires rigorous operation by the experimenter and attention to the details of all links in order to successfully obtain the desired product.
    5-Thiazolecarboxylic acid, 2-ethyl-4-methyl - what is the price in the market?
    Today, there are 5-carboxylpyridylic acid, 2-ethyl-4-methyl. What is the price of this product on the market? I will investigate it carefully for you.
    The price of a product in the market often depends on multiple ends. First, the raw materials are also obtained. If the raw materials of 5-carboxylpyridylic acid and 2-ethyl-4-methyl are easy and inexpensive to obtain, the finished product price may not be high; on the contrary, if the raw materials are rare and difficult to obtain, the price will be high.
    Second, it is difficult to make. The system of these two things, if the method is simple and easy to work, saves time and effort, its price may be easy; if the production method is complicated, requires exquisite art and precious utensils, and takes a long time and costs a lot, the price will be high.
    There is also a need. If in the pharmaceutical, chemical and other industries, the two need to be widely used and urgent, and the supply exceeds the demand, the price will rise; if there is a shortage of those who need it, and the supply exceeds the demand, the price may fall.
    And the quantity of production is also involved. If there are many manufacturers, large production capacity, and the market is full of goods, the price will tend to be flat; if there are few producers and the quantity is limited, the price will often be high.
    Furthermore, the quality is etc. Those who are of high quality, the price is often higher than those who are of inferior quality. In the words of 5-carboxylpyridylic acid and 2-ethyl-4-methyl, if the purity is high and the number of miscellaneous is less, the price is expensive; if the purity is low and the heterogeneous content is more, the price is low.
    In summary, it is difficult to determine the market price of 5-carboxylpyridylic acid and 2-ethyl-4-methyl. It is necessary to study the raw materials, craftsmanship, needs, output, and quality in detail to know the general price. To know the price, you can consult the merchants of the chemical raw materials market, or check the price report of the industry, and you can get a near-real price.