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                                                What are the main uses of Methyl 4-methylthiazole-5-carboxylate?
                    Methyl-4-methylthiazole-5-carboxylic acid esters are used in various fields. They are mainly used in the field of medicinal chemistry and are often the key raw materials for the creation of new drugs. In the process of synthesizing drugs, based on this, through various reactions, molecular structures with specific pharmacological activities can be constructed to deal with various diseases. 
 Furthermore, it also plays an important role in the field of fine chemicals. It can be used as a raw material for the synthesis of fine chemicals such as high-end fragrances and additives. With a specific process, it can be converted into a fragrance with a unique aroma, which can be used in perfumes, cosmetics and other products to increase its aroma level and uniqueness; in the field of additives, it can improve product-specific properties, such as improving material stability or processing performance. 
 also plays a key role in pesticide chemistry. It can be used as a starting material for the synthesis of new pesticides. With its unique chemical structure, it can create high-efficiency, low-toxicity pesticides with specific insecticidal, bactericidal or herbicidal properties, which can help agricultural production, protect crops from pests and diseases, and ensure yield and quality. Overall, methyl-4-methylthiazole-5-carboxylate is an indispensable raw material in the fields of medicine, fine chemicals, and pesticide chemistry, promoting the development and innovation of various fields. 
                                                                What are the physical and chemical properties of Methyl 4-methylthiazole-5-carboxylate
                    Methyl-4-methylthiazole-5-carboxylate, this is an organic compound with unique physical and chemical properties. Its shape may be crystalline powder, white to slightly yellow in appearance, and stable under normal conditions. In case of open flame and hot topic, there is a risk of combustion. 
 Regarding solubility, it is soluble in common organic solvents such as dichloromethane, chloroform, acetone, etc., but its solubility in water is poor. This property makes it suitable for organic synthesis. When selecting reaction solvents, organic solvents can be used to create a suitable reaction environment. < Br > 
 Its melting point is in a specific range, about [X] ° C. This melting point characteristic is crucial for the identification and purification of the compound. Its purity can be tested by means of melting point determination. 
 As for the boiling point, under specific pressure conditions, it is about [X] ° C. The properties of the boiling point are an important reference for the separation of the compound and other impurities by distillation. 
 In chemical reactions, the ester group of methyl-4-methylthiazole-5-carboxylate can participate in classic reactions such as hydrolysis, alcoholysis, and aminolysis. The existence of thiazole ring endows it with unique chemical activity, which can react with many reagents to derive new compounds with diverse structures, which has great potential for application in the fields of medicinal chemistry and materials science.
                                                                What are the synthetic methods of Methyl 4-methylthiazole-5-carboxylate?
                    There are various ways to synthesize methyl-4-methylthiazole-5-carboxylic acid esters. The common one is to use sulfur-containing compounds and nitrogen-containing compounds as starting materials and react by condensation. In a suitable reaction solvent, such as a polar organic solvent, such as dimethylformamide, the two react at a specific temperature and under the action of a catalyst. The catalyst can be selected from bases, such as potassium carbonate, sodium carbonate, etc., which can promote the reaction process and speed up the condensation between compounds. The reaction temperature is usually controlled in a moderate range, between about 50 ° C and 150 ° C, depending on the activity of the reactants and the condition of the reaction equipment. 
 Furthermore, halogenated hydrocarbons and thiazole derivatives can also be used as raw materials. Halogenated hydrocarbons need to have suitable leaving groups, such as chlorine, bromine, etc. It is co-located with thiazole derivatives containing active check points under suitable reaction conditions. It is often necessary to add metal catalysts, such as palladium catalysts, to catalyze the coupling reaction between halogenated hydrocarbons and thiazole derivatives. The reaction system also needs the participation of bases to neutralize the hydrogen halides generated by the reaction and ensure the smooth progress of the reaction. This reaction requires strict reaction conditions, and the temperature, catalyst dosage, and reactant ratio need to be carefully regulated. 
 Another method is to use carboxylic acids or their derivatives and 4-methylthiazole as raw materials. Carboxylic acids or their derivatives, such as acyl chloride, anhydride, etc., react with 4-methylthiazole under specific conditions. In this process, the nucleophilic substitution reaction mechanism between the two can be used to introduce carboxyl groups to generate methyl-4-methylthiazole-5-carboxylic acid esters. During the reaction, attention should be paid to the choice of reaction solvent, avoid the occurrence of side reactions such as hydrolysis, and strictly control the reaction conditions to obtain products with higher yields. 
                                                                What is the price of Methyl 4-methylthiazole-5-carboxylate in the market?
                    The price of methyl-4-methylthiazole-5-carboxylic acid ester in the market is difficult to determine. Due to the complex market conditions, the price changes with the wind, and many factors can influence its price. 
 Looking at "Tiangong Kaiwu", which is detailed in all the methods of creation, it is difficult to find traces of the price of fine chemicals such as methyl-4-methylthiazole-5-carboxylic acid ester. When the chemical industry was not developed, such substances may not have come out, even if they are similar, it is difficult to match the current situation. 
 In this world, the change in the price of this compound is primarily due to supply and demand. If there are many applicants and few suppliers, the price will rise; on the contrary, the supply will exceed the demand, and the price will fall. Furthermore, the price of raw materials is also the key. If raw materials are expensive, the cost of making this compound will increase, and its price will also increase. Production technology also has an impact. Efficient methods can reduce costs, and prices may be slightly lower; conversely, prices may be higher. 
 And market competition and regional differences can lead to different prices. Therefore, to know the exact price, you must consult chemical raw material suppliers, or refer to chemical market market information, in order to get a near-real price. 
                                                                What are the manufacturers of Methyl 4-methylthiazole-5-carboxylate?
                    Methyl-4-methylthiazole-5-carboxylic acid ester is an important compound in the field of organic synthesis, which is widely used in medicine, pesticides, materials and other industries. Many manufacturers are involved in the production of this compound, as detailed by several well-known companies. 
 First of all, BASF in Germany, a global chemical industry giant, has extraordinary R & D and production strength. BASF has deep attainments in the field of organic synthesis. With advanced technology and strict quality control system, the methyl-4-methylthiazole-5-carboxylic acid ester produced is of high quality and is supplied to many customers around the world. It has obvious advantages in the high-end market. 
 The Dow Chemical Company in the United States cannot be ignored either. Dow Chemical has rich experience in the production of chemical products. Its production process of methyl-4-methylthiazole-5-carboxylic acid esters is continuously optimized. The products are not only high in purity, but also have considerable production capacity. It occupies an important share in the international market and provides stable raw material support for many industries. 
 As for China, a chemical enterprise in Jiangsu has performed well in the production of methyl-4-methylthiazole-5-carboxylic acid esters. The enterprise has been focusing on the field of fine chemicals for many years and has accumulated a lot of technical and production experience. Through continuous innovation and improvement, its product quality has reached the international advanced level, and due to proper cost control, it is quite competitive in terms of price, and its products are sold well at home and abroad. 
 There is also a chemical enterprise in Shandong, which is famous for its efficient production and high-quality service. This enterprise attaches great importance to R & D investment and cooperates closely with many scientific research institutions to continuously improve the production technology of methyl-4-methylthiazole-5-carboxylate. Its product variety is rich, which can meet the individual needs of different customers and win a good reputation in the domestic market. 
 These companies are only representatives of methyl-4-methylthiazole-5-carboxylic acid ester manufacturers, and there are many other outstanding companies in the industry, jointly promoting the production and application of this compound.