High Purity Beta-D-Glucopyranoside, 4-[2-(3,5-dimethoxyphenyl)ethenyl]phenyl CAS 50450-35-6
Discover a vital pharmaceutical intermediate for your API synthesis needs, offering exceptional purity and reliability.
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Beta-D-Glucopyranoside, 4-[2-(3,5-dimethoxyphenyl)ethenyl]phenyl
This high-purity compound, commonly known by its CAS number 50450-35-6, is a critical pharmaceutical intermediate. Its consistent quality and fine powder form make it an ideal raw material for the synthesis of Active Pharmaceutical Ingredients (APIs). Beyond its role in chemical synthesis, it exhibits properties such as antioxidant and anti-cell proliferation, positioning it as a valuable component for advanced research and development in the pharmaceutical sector.
- Unlock efficient API synthesis with high purity 3,5-dimethoxyphenyl ethenyl phenyl glucoside, ensuring consistent product quality for your pharmaceutical applications.
- Source reliable CAS 50450-35-6 supplier for your critical chemical needs, ensuring a steady supply chain for your manufacturing processes.
- Explore the benefits of ordering API raw materials online, streamlining procurement and accessing high-grade intermediates for drug discovery.
- Investigate the potential of this pharmaceutical intermediate powder for novel drug development and advanced chemical research.
Advantages Offered
Exceptional Purity
Achieve superior synthesis outcomes with material that boasts a purity exceeding 99%, a cornerstone for high-quality pharmaceutical ingredients.
Versatile Application
As a key API raw material, it is instrumental in various synthesis pathways, supporting innovation in drug development and research.
Reliable Supply Chain
Ensure uninterrupted production by partnering with a trusted CAS 50450-35-6 supplier, guaranteeing timely delivery and consistent quality.
Key Applications
API Raw Materials
Essential for the production of Active Pharmaceutical Ingredients, this compound is a building block for various therapeutic agents.
Pharmaceutical Synthesis
Facilitates complex organic synthesis reactions, enabling the creation of advanced pharmaceutical compounds and intermediates.
Research & Development
Its unique properties make it valuable for laboratory research, preclinical studies, and the exploration of new drug candidates.
Fine Chemical Industry
Contributes to the fine chemical sector as a high-value intermediate for specialized chemical manufacturing processes.