The product we are introducing here is (3,4-Dimethoxyphenyl)acetonitrile with the CAS number 93 - 17 - 4. It is factory - supplied and comes with the best price in the market. The chemical formula of (3,4 - Dimethoxyphenyl)acetonitrile is C₁₀H₁₁NO₂. It has a molecular weight of approximately 177.20 g/mol. The compound typically appears as a colorless to light - yellow liquid or solid, depending on the temperature and purity. Its density, boiling point, and melting point are important physical parameters. The density is around 1.11 g/cm³. The boiling point is usually in the range of 290 - 295 °C, and the melting point is about 51 - 53 °C. It is important to note that the product should be stored in a cool, dry place away from direct sunlight and sources of ignition as it may be flammable under certain conditions.
(3,4 - Dimethoxyphenyl)acetonitrile has a wide range of applications in different industries. In the pharmaceutical industry, it serves as a key intermediate in the synthesis of various drugs. It can be used to create compounds with potential anti - inflammatory, analgesic, and anti - tumor properties. The unique chemical structure of (3,4 - Dimethoxyphenyl)acetonitrile allows it to participate in complex chemical reactions that are crucial for the formation of bioactive molecules. In the field of organic synthesis, it is used as a building block to construct more complex organic compounds. Chemists can utilize its reactive functional groups to introduce new chemical entities and create novel materials. Moreover, it has some applications in the fragrance industry. It can contribute to the development of unique scents due to its specific chemical properties that can interact with other odor - active compounds.
When using (3,4 - Dimethoxyphenyl)acetonitrile, it is essential to follow proper safety procedures. First, ensure that you are wearing appropriate personal protective equipment, such as gloves, safety glasses, and a lab coat. Before starting any experiment or process involving this compound, make sure that the working area is well - ventilated to prevent the inhalation of potentially harmful vapors. For laboratory synthesis, the compound can be dissolved in suitable solvents, such as ethanol or dichloromethane, depending on the reaction requirements. The amount of (3,4 - Dimethoxyphenyl)acetonitrile used should be accurately measured according to the stoichiometry of the reaction. During the reaction process, monitor the temperature and reaction time carefully. After the reaction is completed, proper purification methods, such as distillation or recrystallization, should be employed to obtain the desired product with high purity.
Caso 1: Síntese farmacêutica
A research team was working on the development of a new anti - inflammatory drug. They used (3,4 - Dimethoxyphenyl)acetonitrile as an intermediate in the multi - step synthesis. First, they reacted (3,4 - Dimethoxyphenyl)acetonitrile with a specific amine compound under controlled temperature and pressure conditions. The reaction took place in a solvent system of ethanol and water. After a series of purification steps, they obtained an intermediate compound. Further reactions were carried out to introduce other functional groups to the intermediate, resulting in the formation of the target anti - inflammatory compound. In vitro and in vivo tests showed promising anti - inflammatory activity of the final product, demonstrating the importance of (3,4 - Dimethoxyphenyl)acetonitrile in pharmaceutical synthesis.
Caso 2: Desenvolvimento de material orgânico
A group of materials scientists aimed to create a new type of organic semiconductor. They used (3,4 - Dimethoxyphenyl)acetonitrile as a key building block. By reacting it with other conjugated monomers, they were able to synthesize a polymer with unique electronic properties. The resulting polymer showed good charge - transport characteristics and could be used in the fabrication of organic field - effect transistors. This case study highlights the potential of (3,4 - Dimethoxyphenyl)acetonitrile in the development of advanced organic materials.
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Este é o William, Diretor Executivo da Zhishang Chemical Co., Ltd.
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