Lepidine, with the CAS number 491 - 35 - 0, is an important organic compound. Its chemical formula is C₉H₉N, and it has a molecular weight of approximately 131.17 g/mol. Lepidine is a heterocyclic aromatic compound, containing a pyridine ring fused with a benzene ring. Physically, it appears as a colorless to pale - yellow liquid or solid under different conditions. It has a characteristic odor and is soluble in common organic solvents such as ethanol, ether, and chloroform, while having limited solubility in water.
The purity of the factory - supplied lepidine is carefully controlled to ensure the best quality. Our manufacturing process adheres to strict quality control standards, and the product typically has a purity of over 98%, which can meet the requirements of various applications.
Lepidine has a wide range of applications in different fields. In the pharmaceutical industry, it serves as an important intermediate. It can be used in the synthesis of various drugs, especially those with potential anti - inflammatory, antibacterial, and antineoplastic properties. Scientists are researching how to use lepidine as a starting material to develop new drugs that can effectively treat complex diseases.
In the field of organic synthesis, lepidine is used as a reagent or catalyst in many chemical reactions. It can participate in reactions such as substitution reactions, addition reactions, and coupling reactions, helping chemists to construct more complex organic molecules. Moreover, in the field of dyes and pigments, lepidine derivatives can be used to synthesize colorants with specific properties, providing bright colors and good stability.
When handling lepidine, it is crucial to follow safety procedures. First, wear appropriate personal protective equipment, including gloves, goggles, and a lab coat. Store lepidine in a cool, dry, and well - ventilated area away from heat sources and direct sunlight.
In a laboratory setting, for chemical reactions where lepidine is used as a reagent, accurately measure the required amount according to the reaction stoichiometry. Dissolve lepidine in the appropriate solvent before adding it to the reaction system. Stir the reaction mixture continuously to ensure uniform reaction conditions. After the reaction is completed, follow the standard purification procedures to isolate and purify the desired product.
In industrial applications, large - scale handling of lepidine requires strict compliance with safety regulations. Specialized equipment should be used for storage, transportation, and reaction operations. Workers should receive professional training on handling lepidine to prevent accidents.
Pharmaceutical Synthesis Case: A pharmaceutical research team was working on the development of a new anti - inflammatory drug. They used lepidine as a key intermediate. First, they carried out a series of substitution reactions on lepidine to introduce specific functional groups. By carefully controlling the reaction conditions, such as temperature, reaction time, and the amount of reagents, they were able to synthesize a novel compound with high anti - inflammatory activity. In pre - clinical trials, this compound showed significant efficacy in reducing inflammation in animal models, demonstrating the potential of lepidine in pharmaceutical development.
Organic Synthesis Case: In an organic chemistry laboratory, researchers were attempting to synthesize a complex natural product - like molecule. Lepidine was used as a catalyst in a coupling reaction. By using lepidine, the reaction rate was significantly increased, and the yield of the target product was improved. The successful synthesis of this molecule not only proved the effectiveness of lepidine as a catalyst but also provided a new synthetic route for the preparation of similar complex molecules.
If you have any questions about our factory - supplied lepidine CAS 491 - 35 - 0, please feel free to contact us. You can reach us via email at info@vivalr.com or call us at (86) 15866781826.
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