Phenyl 2,4,6-Tri-O-acetyl-3-O-allyl-1-thio-beta-D-glucopyranoside (CAS 197005-22-4): A Key Pharmaceutical Intermediate
Discover the crucial role of Phenyl 2,4,6-Tri-O-acetyl-3-O-allyl-1-thio-beta-D-glucopyranoside in advancing pharmaceutical synthesis.
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Phenyl 2,4,6-Tri-O-acetyl-3-O-allyl-1-thio-beta-D-glucopyranoside
This essential pharmaceutical intermediate, with the CAS number 197005-22-4, is a vital component in the sophisticated field of drug synthesis. Its precise molecular structure and high purity are critical for the development of active pharmaceutical ingredients (APIs), underpinning the creation of new and improved therapeutic agents. As a foundational chemical compound for drug development, its reliability is paramount for research and manufacturing excellence.
- Unlock advanced drug synthesis pathways using this high purity chemical compound, crucial for creating novel APIs.
- Explore the versatility of CAS 197005-22-4 in chemical synthesis, facilitating complex organic chemistry reactions.
- As a key building block for APIs, this compound ensures the integrity and efficacy of your pharmaceutical research and development projects.
- Leverage the reliable supply of this white powder pharmaceutical intermediate to streamline your manufacturing processes.
Advantages in Pharmaceutical Synthesis
Accelerated Drug Development
Utilize this vital pharmaceutical intermediate for drug synthesis to expedite your R&D timelines and bring life-saving treatments to market faster.
Ensured Purity and Quality
The high purity of this chemical compound guarantees consistent results in your complex organic chemistry applications, vital for API development.
Foundation for Innovation
As a critical building block for APIs, it provides a robust foundation for innovative pharmaceutical solutions and advanced chemical synthesis.
Key Applications
Active Pharmaceutical Ingredient (API) Synthesis
This compound is indispensable for the intricate synthesis of various APIs, forming the core of many pharmaceutical products.
Pharmaceutical Research and Development
Its unique chemical structure makes it a valuable tool for researchers exploring new drug candidates and therapeutic pathways.
Advanced Organic Synthesis
The compound serves as a versatile intermediate in complex organic synthesis, enabling the creation of specialized molecules.
Chemical Building Block
It functions as a fundamental chemical building block, critical for constructing more complex molecular architectures in pharmaceutical manufacturing.