Borane-Methyl Sulfide Complex: A Key Reagent in Modern Pharmaceutical Synthesis
Discover the stability and versatility of Borane-Methyl Sulfide Complex, essential for advanced drug manufacturing.
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Borane-Methyl Sulfide Complex
Borane-Methyl Sulfide Complex (CAS 13292-87-0) is a high-purity chemical compound valued for its stability and efficacy in sophisticated chemical processes. Its primary role is as a crucial intermediate in the production of vital pharmaceuticals, notably Montelukast Sodium and Entecavir, often in synergy with pinene. This reagent offers a reliable and effective solution for complex synthetic routes.
- Leverage the enhanced stability of Borane-Methyl Sulfide Complex for consistent pharmaceutical synthesis outcomes.
- Explore the application of Borane-Methyl Sulfide Complex in Montelukast Sodium production, a key asthma medication.
- Utilize Borane-Methyl Sulfide Complex as a critical Entecavir intermediate in antiviral drug manufacturing.
- Benefit from the high purity (≥99% assay) of Borane-Methyl Sulfide Complex for stringent quality control in your processes.
Key Advantages
Enhanced Stability
Compared to other borane reagents, Borane-Methyl Sulfide Complex offers superior stability, reducing decomposition and ensuring consistent performance in complex reactions, making it ideal for your pharmaceutical synthesis needs.
Versatile Application
This complex is instrumental in various synthetic pathways, particularly as an Entecavir intermediate and in conjunction with pinene for Montelukast Sodium production, showcasing its broad utility in the pharmaceutical sector.
High Purity Assurance
With an assay of ≥99%, this Borane-Methyl Sulfide Complex meets demanding industry standards, providing the purity required for high-quality pharmaceutical manufacturing and reliable chemical reagent applications.
Key Applications
Pharmaceutical Intermediates
Serves as a critical component in the synthesis of active pharmaceutical ingredients (APIs), particularly for Montelukast Sodium and Entecavir, demonstrating its value as a pharmaceutical intermediate.
Organic Synthesis
Its role in hydroboration and reduction reactions makes it a versatile reagent for various organic synthesis pathways, supporting research and development efforts in fine chemicals.
Specialty Chemical Production
Used in the production of high-purity semiconductor materials, highlighting its application in the broader specialty chemical manufacturing sector.
Research & Development
Its unique properties make it a valuable tool for chemical research, enabling advancements in asymmetric reductions and other complex chemical transformations.