The product, High Quality 5-(ethylthio)-1H-tetrazole with the CAS number 89797 - 68 - 2, is renowned for its high quality and low price. The chemical formula of 5-(ethylthio)-1H-tetrazole provides a unique molecular structure that gives it distinct chemical properties.
In terms of physical appearance, it usually presents as a fine powder with specific solubility characteristics in different solvents. Its melting point and boiling point are important physical parameters that can affect its handling and application in various processes. The high - quality standard of this product ensures a high degree of purity, minimizing the presence of impurities that could potentially interfere with its intended use.
5-(ethylthio)-1H-tetrazole has a wide range of applications in the chemical and pharmaceutical industries. In the chemical field, it can be used as an intermediate in the synthesis of various organic compounds. Its unique tetrazole ring structure makes it a valuable building block for creating complex molecular architectures.
In the pharmaceutical industry, it may play a role in the development of new drugs. It can be involved in the formation of key functional groups in drug molecules, which can influence the drug's efficacy, bioavailability, and stability. Additionally, it can also be used in research and development projects to explore new chemical reactions and synthetic routes.
When using 5-(ethylthio)-1H-tetrazole, it is essential to follow proper safety procedures. Wear appropriate personal protective equipment, such as gloves and safety goggles, to prevent direct contact with the product. Since it is a chemical compound, proper ventilation is required in the working area to avoid inhalation of vapors.
In a laboratory or industrial setting, accurate measurement is crucial. Use calibrated measuring instruments to ensure the correct amount of the product is used. When dissolving it in a solvent, stir gently to promote uniform dispersion. The reaction conditions, such as temperature, pressure, and reaction time, should be strictly controlled according to the specific application requirements.
Case 1: Chemical Synthesis in a Research Lab
A research team was working on synthesizing a new organic compound for material science applications. They used 5-(ethylthio)-1H-tetrazole as a key intermediate. First, they measured 5 grams of the product accurately using an analytical balance. Then, they dissolved it in 20 milliliters of a specific organic solvent in a round - bottom flask. Under a nitrogen atmosphere, they added other reactants step - by - step and maintained the reaction temperature at 50 degrees Celsius for 8 hours. After the reaction, they purified the product using column chromatography. The final yield of the target compound was 70%, which was considered a successful result.
Case 2: Pharmaceutical R & D
A pharmaceutical company was developing a new drug for a specific disease. They incorporated 5-(ethylthio)-1H-tetrazole into the drug molecule during the synthesis process. By carefully controlling the reaction conditions and optimizing the synthetic route, they were able to produce a drug candidate with high bioactivity. In pre - clinical trials, the drug candidate showed promising results in inhibiting the growth of disease - causing cells, which demonstrated the importance of this product in pharmaceutical development.
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