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                                                What are the main uses of methyl 2-aminothiazole-5-carboxylate?
                    Methyl-2-aminothiazole-5-carboxylic acid ester is widely used. In the field of medicinal chemistry, it is often a key intermediate for the synthesis of drugs. The preparation of many antibacterial and anti-inflammatory drugs relies on its participation in the reaction to build a specific chemical structure and give the drug the required biological activity and pharmacological properties. 
 In the field of pesticides, methyl-2-aminothiazole-5-carboxylic acid ester is also indispensable. Using this as a starting material, pesticide products with high insecticidal and bactericidal properties can be created, which can help agricultural prevention and control of pests and diseases and ensure crop harvest. 
 Furthermore, in the field of materials science, it may be used to synthesize functional materials with special properties. By polymerizing or modifying with other compounds, the material has unique electrical, optical or mechanical properties, which are used in electronic devices, optical materials and many other fields. 
 In summary, methyl-2-aminothiazole-5-carboxylic acid esters are of great value in the fields of medicine, pesticides and materials science, and are of great significance to promote the development of related industries. 
                                                                What are the synthesis methods of methyl 2-aminothiazole-5-carboxylate
                    The synthesis methods of methyl-2-aminothiazole-5-carboxylic acid esters have many different paths. First, it can be obtained from the precursor containing the thiazole ring and converted in multiple steps. First, the thiazole ring structure is constructed by condensation reaction with suitable raw materials. For example, select a sulfur-containing compound and a nitrogen-containing compound, under specific reaction conditions, such as in a suitable solvent, add an appropriate amount of catalyst, and heat up to a certain temperature range to promote the condensation of the two to form a thiazole ring intermediate. 
 Subsequently, for this intermediate, its specific position is modified. Treated with a carboxylating agent, a carboxyl group is introduced at the 5-position of the thiazole ring. This step requires precise control of the reaction conditions, such as reaction time, temperature, and the amount of reagent, to ensure that the carboxylation reaction occurs efficiently and selectively. Next, the carboxyl group and methanol are reacted with acid catalysis or other suitable conditions to form the target product methyl-2-aminothiazole-5-carboxylic acid ester. 
 Another way is to synthesize from different starting materials through a series of functional group transformations. The precursor containing amino and carboxyl groups is prepared first, and then the thiazole ring structure is constructed. The amino-containing compound can be reacted with the sulfur-containing reagent first to form a sulfur-containing amino intermediate, and then the thiazole ring is formed by cyclization reaction. During the cyclization process, the activity of the reaction substrate, the properties of the reaction solvent and the additives added to the reaction need to be considered to promote the cyclization to proceed smoothly. Subsequently, methyl groups are introduced through esterification to finally obtain the target product. This synthesis method requires fine regulation of the reaction conditions at each step to ensure the yield and selectivity of each step, so as to efficiently prepare methyl-2-aminothiazole-5-carboxylate. 
                                                                What are the physical properties of methyl 2-aminothiazole-5-carboxylate?
                    Methyl-2-aminothiazole-5-carboxylic acid ester. This compound is an organic compound with unique physical and chemical properties. 
 Its properties are mostly white to light yellow crystalline powder under normal conditions, fine and uniform in texture, like fine sand. This form is easy to store and use, providing convenience for subsequent experiments and industrial applications. 
 In terms of melting point, it is about 150-155 ° C. When the temperature rises to this range, the compound gradually changes from solid to liquid and undergoes phase changes. This melting point characteristic is of great significance in the process of separation, purification and identification of compounds, and can be used to distinguish it from other substances with different melting points. 
 In terms of solubility, it exhibits good solubility in common organic solvents such as methanol, ethanol, and dichloromethane, and can be mutually soluble with these solvents in a certain proportion to form a uniform stable solution. However, the solubility in water is relatively small, only slightly soluble. This difference in solubility allows it to play a specific role in the reaction and application of different systems, such as in organic phase reaction systems, by virtue of its solubility in organic solvents to participate in the reaction process. 
 In terms of stability, it is relatively stable in a dry environment at room temperature and pressure, and can be stored for a long time without significant deterioration. However, it should be noted that its tolerance to strong acid and strong alkali environments is poor. In case of strong acid, the amino group and the carboxyl group will undergo protonation and other reactions to change the molecular structure and chemical properties; in case of strong alkali, the ester group is prone to hydrolysis, resulting in the destruction of the compound structure. Therefore, when storing and using, avoid contact with strong acids and bases, and choose suitable environmental conditions to ensure the stability of its chemical structure and properties. 
                                                                What is the price of methyl 2-aminothiazole-5-carboxylate in the market?
                    The price of methyl-2-aminothiazole-5-carboxylic acid ester in the market is not easy to say. The genus of "Tiangong Kaiwu", an ancient book, involves a lot of craftsmanship and products, but the price of this product may not be contained. At present, the price of this product depends on many things. 
 First, it is related to the cost of production. The procurement of raw materials, the preparation process, and the amount of energy consumption all affect their price. If the raw materials are scarce and rare, or the preparation method is complicated and expensive, the price will be high. 
 Second, the supply and demand of the market is also the main reason. If there are many people seeking, and the supply is limited, the price will rise; if the supply exceeds the demand, the price will decline. 
 Third, the situation of industry competition should not be ignored. Many companies compete in the market, or adjust prices for profit to compete for share. 
 Furthermore, the differences in regions and quality also make their prices worse. Therefore, if you want to know the exact price of this product, you should carefully study the chemical market information and consult industry merchants or manufacturers to obtain a more accurate number. It is difficult to determine the price in the market based on speculation. 
                                                                What are the storage conditions for methyl 2-aminothiazole-5-carboxylate?
                    Methyl-2-aminothiazole-5-carboxylic acid ester is an organic compound. Its storage conditions are quite important, which is related to the stability and quality of this compound. 
 This compound should be stored in a cool, dry and well-ventilated place. In a cool environment, it can avoid changes in its properties or chemical reactions caused by high temperature. Under high temperature, its molecular structure may be damaged and its activity changed, which will affect its effectiveness in subsequent applications. 
 A dry environment is also indispensable. Moisture can easily cause the compound to get damp, or initiate reactions such as hydrolysis, which will damage its chemical properties. Therefore, a dry place should be selected to avoid excessive contact with moisture. 
 Good ventilation ensures air circulation in the storage space, prevents the accumulation of volatile gases, reduces the risk of explosion or fire, and helps to maintain a stable storage environment. 
 In addition, when storing, it should be stored separately from oxidizing agents, acids, bases and other substances. Because the compound is prone to chemical reactions with such substances, it can deteriorate. 
 Furthermore, the choice of storage container should not be underestimated. A well-sealed container should be used to prevent the intrusion of external air, moisture, etc., to ensure the purity and stability of the compound. And the container material should be compatible with the compound and should not react with it. Therefore, the methyl-2-aminothiazole-5-carboxylate must be properly stored to ensure its quality and effectiveness.