Manufacturer & Supplier of (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol | Pharmaceutical Intermediate for Crizotinib Synthesis
Discover a leading global manufacturer and supplier of high-purity (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol (CAS 330156-50-8), a critical pharmaceutical intermediate for the synthesis of advanced anti-tumor therapies like Crizotinib. Partner with us for reliable supply, competitive pricing, and exceptional quality.
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(R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol
As a premier manufacturer and supplier in China, we specialize in providing (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol (CAS 330156-50-8) with assured purity of >=98.0%. This chiral alcohol is an indispensable building block in the complex synthesis pathways for life-saving pharmaceuticals, most notably as a key intermediate for Crizotinib, an important anti-tumor targeted drug. Our commitment to stringent quality control ensures that every batch meets the highest industry standards, offering you a reliable and cost-effective solution for your R&D and production needs.
- High Purity (>=98.0%): Ensuring optimal reaction outcomes and final product quality for your pharmaceutical applications.
- Critical Crizotinib Intermediate: Essential for the synthesis of this vital anti-tumor molecular targeted drug.
- Reliable Manufacturer & Supplier: Benefit from consistent supply and competitive pricing from our China-based operations.
- Chiral Alcohol for Organic Synthesis: A versatile building block for complex organic synthesis projects.
Key Advantages of Partnering with Us
Unwavering Quality Assurance
Our manufacturing processes adhere to strict quality protocols, ensuring that each batch of (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol consistently meets purity specifications of >=98.0%. This focus on quality is paramount for pharmaceutical intermediates, where impurities can significantly impact downstream synthesis and the efficacy of the final drug product. We offer transparent COA and SDS for your due diligence.
Cost-Effective Sourcing
Leveraging our expertise as a dedicated manufacturer and supplier in China, we offer highly competitive pricing for (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol. We understand the importance of cost management in pharmaceutical development and production, providing you with an economically viable solution to buy this crucial intermediate in bulk quantities. Request a quote today to explore our attractive price points.
Secure and Stable Supply Chain
As a trusted supplier, we maintain robust inventory levels and efficient production capabilities to guarantee a stable and uninterrupted supply of (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol. Whether you require gram-scale for R&D or multi-kilogram quantities for production, our logistics ensure timely delivery to your facility worldwide. We are your dependable partner for consistent procurement.
Primary Applications and Potential
Pharmaceutical Synthesis
The primary application of (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol lies in its role as a vital intermediate in the synthesis of targeted cancer therapies, such as Crizotinib (CAS 877399-52-5). Its specific chiral configuration is crucial for the biological activity of the final drug.
Chiral Building Block
As a well-defined chiral alcohol, it serves as an excellent building block in asymmetric synthesis for a wide range of complex organic molecules. Researchers and formulators can leverage its unique structure to develop novel compounds with specific stereochemical properties.
Custom Synthesis Projects
For custom synthesis requirements, our team can work with clients needing (R)-1-(2,6-Dichloro-3-fluorophenyl)ethanol or its derivatives. We support R&D departments in exploring new therapeutic areas or optimizing existing synthetic routes, offering flexibility in batch sizes and specifications.
Advanced Chemical Research
Beyond pharmaceuticals, this compound may find applications in advanced chemical research where specific halogenated and chiral alcohol functionalities are required. Its unique substitution pattern offers interesting possibilities for materials science and specialty chemical development.