The product is High Quality ethyl 3 - amino - 3 - thioxopropanoate with the CAS number 13621 - 50 - 6. It is known for its high quality and comes with a competitive price. This chemical compound has a specific molecular structure that gives it unique chemical properties. The ethyl group attached to the propanoate backbone, along with the amino and thioxo functional groups, contribute to its reactivity and potential applications. In terms of its physical properties, it may have a certain melting point, boiling point, and solubility in different solvents. These properties are crucial for handling and using the product effectively in various chemical processes. The high - quality aspect of this product ensures consistent results in chemical reactions and applications where it is employed.
Ethyl 3 - amino - 3 - thioxopropanoate has a wide range of uses in the chemical and pharmaceutical industries. In the chemical synthesis field, it can serve as a key intermediate in the preparation of more complex organic compounds. For example, it can be used in the synthesis of heterocyclic compounds, which are important building blocks in the development of new drugs and materials. Due to its functional groups, it can participate in various chemical reactions such as condensation reactions, substitution reactions, etc. In the pharmaceutical industry, it may be involved in the synthesis of drugs with antibacterial, antifungal, or other biological activities. The amino and thioxo groups can interact with biological targets in the body, making it a valuable starting material for drug discovery and development.
When using High Quality ethyl 3 - amino - 3 - thioxopropanoate, it is essential to follow proper safety procedures. First, ensure that you are working in a well - ventilated area to prevent inhalation of any potentially harmful vapors. Wear appropriate personal protective equipment, including gloves and safety glasses. Before starting the reaction, carefully measure the required amount of the product according to your experimental protocol. It is usually recommended to dissolve the product in a suitable solvent, depending on the nature of the reaction. Common solvents include organic solvents such as ethanol, dichloromethane, etc. Once dissolved, add the product slowly to the reaction mixture while stirring continuously. Monitor the reaction conditions, such as temperature and reaction time, to ensure the desired reaction outcome. After the reaction is complete, follow the appropriate purification and separation steps to obtain the final product.
Case 1: In a pharmaceutical research project, a team was working on the synthesis of a new antibacterial drug. They used ethyl 3 - amino - 3 - thioxopropanoate as a key intermediate. By reacting it with a specific aromatic compound in the presence of a suitable catalyst, they were able to form a heterocyclic compound with promising antibacterial activity. The reaction was carried out at a temperature of 50°C for 12 hours in ethanol as the solvent. After purification by column chromatography, the final product was obtained with a high yield. In vitro antibacterial tests showed that the synthesized compound had strong inhibitory effects against several common bacterial strains.
Case 2: In a chemical synthesis laboratory, researchers were trying to develop a new material with unique optical properties. They incorporated ethyl 3 - amino - 3 - thioxopropanoate into a polymer synthesis process. By copolymerizing it with other monomers, they were able to create a polymer with enhanced fluorescence properties. The resulting polymer had potential applications in the field of optoelectronics, such as in the development of sensors and displays. The reaction conditions were carefully optimized to control the molecular weight and composition of the polymer.
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