Discover 4-Amino-3-fluoropyridine: Your Key Organic Synthesis Intermediate
Unlock advanced chemical synthesis with this high-purity fluorinated building block.
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4-Amino-3-fluoropyridine
As a crucial organic synthesis intermediate, 4-Amino-3-fluoropyridine (CAS 2247-88-3) offers exceptional utility in creating novel pharmaceutical compounds and advanced materials. Its unique fluorinated pyridine structure makes it an indispensable component in complex synthetic routes, contributing to the development of targeted therapies and innovative electronic materials.
- Leverage the power of 4-Amino-3-fluoropyridine CAS 2247-88-3 intermediate in your drug development projects, ensuring high purity and consistent quality for reproducible results.
- Explore the versatility of this compound as a fluorinated building block for drug development, enabling the synthesis of molecules with enhanced biological activity and pharmacokinetic profiles.
- Optimize your reaction pathways with our high-purity chemical supplier in China, ensuring reliable access to this essential organic synthesis intermediate applications.
- Achieve superior outcomes in your research and development endeavors by utilizing 4-Amino-3-fluoropyridine, a key component in the synthesis of transforming growth factor-β inhibitors and thrombin inhibitors.
Key Advantages
Exceptional Purity
Our 4-Amino-3-fluoropyridine boasts a purity of ≥99%, ensuring reliable and predictable performance in sensitive synthetic processes, crucial for demanding applications.
Versatile Intermediate
As a highly versatile organic synthesis intermediate, it facilitates a broad range of chemical transformations, making it ideal for diverse research and industrial needs.
Critical for Pharmaceuticals
This compound is a vital building block in the synthesis of transforming growth factor-β inhibitors and thrombin inhibitors, supporting advancements in pharmaceutical research and drug discovery.
Key Applications
Organic Synthesis
Utilize the reactivity of 4-Amino-3-fluoropyridine for various synthetic transformations, from coupling reactions to functional group modifications, essential for creating complex molecules.
Pharmaceutical Intermediates
As a key component in drug synthesis, it aids in the creation of novel therapeutic agents, supporting the pipeline for new medicines.
Drug Development
Its role as a fluorinated building block for drug development allows for the precise introduction of fluorine atoms, often enhancing drug efficacy and metabolic stability.
Material Science
Explore its potential in advanced material applications, including electronics and specialty polymers, where its unique structure can impart desirable properties.