High-Purity 1-(2-Chloroethyl)-4-[3-(trifluoromethyl)phenyl]piperazine Dihydrochloride: Synthesis, Properties, and Applications
Discover the synthesis, key properties, and diverse applications of CAS 57061-71-9, a vital pharmaceutical intermediate. Explore its potential in drug discovery and fine chemical synthesis.
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1-(2-Chloroethyl)-4-[3-(trifluoromethyl)phenyl]piperazine dihydrochloride
As a leading manufacturer in China, we offer high-quality 1-(2-Chloroethyl)-4-[3-(trifluoromethyl)phenyl]piperazine dihydrochloride. This fine chemical intermediate is crucial for various research and development projects, particularly within the pharmaceutical sector. Our commitment to purity and consistent supply ensures reliable outcomes for your synthesis of fine chemicals.
- Leverage our expertise in the synthesis of fine chemicals to ensure the quality of your final products.
- Utilize this key pharmaceutical intermediate for efficient drug discovery processes.
- Benefit from the consistent supply of high-purity chemical intermediates from our reliable manufacturing base.
- Explore the chemical properties that make our product suitable for advanced organic synthesis applications.
Advantages of the Product
Exceptional Purity
Achieve superior results in your research with our chemical intermediate boasting a purity of ≥99%, a critical factor for accurate drug discovery outcomes.
Versatile Application
This compound serves as a vital building block in medicinal chemistry, facilitating the development of novel therapeutic agents.
Reliable Supply Chain
Count on us as your trusted supplier for consistent availability and timely delivery of this essential intermediate.
Key Applications
Medicinal Chemistry
This compound is instrumental in medicinal chemistry, aiding in the exploration of new drug candidates and the optimization of existing ones.
Pharmaceutical Development
Its unique structure makes it a valuable component in the synthesis of active pharmaceutical ingredients (APIs) and complex drug molecules.
Fine Chemical Synthesis
As a versatile fine chemical, it supports a wide range of organic synthesis pathways for various advanced materials.
Drug Discovery
Researchers can utilize this intermediate in their drug discovery efforts, benefiting from its well-defined chemical properties and structure.