Unlock Synthesis: The Role of 2,6-Pyridinedicarbonitrile in Pharma
In the intricate world of chemical synthesis, having access to high-quality intermediates is paramount for innovation and efficient production. 2,6-Pyridinedicarbonitrile (CAS 2893-33-6) stands out as a critical building block, particularly within the pharmaceutical industry. As a leading supplier and manufacturer, NINGBO INNO PHARMCHEM recognizes the significance of this versatile compound in driving forward research and development.
The Chemical Profile of 2,6-Pyridinedicarbonitrile
2,6-Pyridinedicarbonitrile, also known by its synonym 2,6-Dicyanopyridine, is a heterocyclic dinitrile characterized by its molecular formula C7H3N3 and a molecular weight of 129.12. Its chemical structure makes it an ideal precursor for a wide array of complex organic molecules. Typically appearing as a white powder, it possesses a melting point in the range of 123-127°C, indicating its solid state at room temperature and ease of handling for synthesis operations.
Applications in Pharmaceutical Synthesis
The primary value of 2,6-Pyridinedicarbonitrile for many B2B clients, such as procurement managers and R&D scientists in the pharmaceutical sector, lies in its role as a key intermediate. It is extensively used in the synthesis of:
- Active Pharmaceutical Ingredients (APIs): Its unique dinitrile functionality allows for diverse chemical transformations, enabling the construction of complex pyridine-based APIs. Researchers often look to buy this intermediate for developing novel drug candidates.
- Specialty Pharmaceutical Intermediates: It serves as a foundational element for creating more elaborate intermediate compounds that are essential in multi-step pharmaceutical synthesis routes.
- Ligands for Medicinal Chemistry: The pyridine core, functionalized with nitrile groups, can be further modified to create specific ligands used in metallodrugs or as chelating agents in biological systems.
Procuring this chemical from a reliable manufacturer like NINGBO INNO PHARMCHEM ensures consistent quality and supply, which is crucial for maintaining the integrity of pharmaceutical research and production pipelines. We offer competitive pricing for bulk purchases, making it easier for companies to secure their supply needs.
Beyond Pharmaceuticals: Other Industrial Uses
While its pharmaceutical applications are significant, 2,6-Pyridinedicarbonitrile also finds utility in other advanced chemical fields:
- Material Science: It is employed in the synthesis of light-emitting elements and other functional materials, contributing to advancements in electronics and display technologies.
- Coordination Chemistry: It acts as a precursor for pyridine-based tridentate ligands, which are vital in catalysis and the study of metal-organic frameworks.
Sourcing 2,6-Pyridinedicarbonitrile
For procurement managers and R&D scientists seeking to buy 2,6-Pyridinedicarbonitrile, identifying a trustworthy manufacturer and supplier is key. NINGBO INNO PHARMCHEM, based in China, is committed to providing high-purity chemical intermediates with comprehensive documentation. We understand the stringent requirements of the pharmaceutical and fine chemical industries and strive to meet them through rigorous quality control and excellent customer service. If you are looking for a dependable supplier to purchase this essential intermediate, do not hesitate to contact us for a quote or sample. Our team is ready to assist you with your specific requirements.
Perspectives & Insights
Future Origin 2025
“The Chemical Profile of 2,6-Pyridinedicarbonitrile2,6-Pyridinedicarbonitrile, also known by its synonym 2,6-Dicyanopyridine, is a heterocyclic dinitrile characterized by its molecular formula C7H3N3 and a molecular weight of 129.”
Core Analyst 01
“Its chemical structure makes it an ideal precursor for a wide array of complex organic molecules.”
Silicon Seeker One
“Typically appearing as a white powder, it possesses a melting point in the range of 123-127°C, indicating its solid state at room temperature and ease of handling for synthesis operations.”