2,2':6',2''-Terpyridine: A Key Heterocyclic Ligand for Advanced Chemical Synthesis and Applications

Discover the versatility of 2,2':6',2''-Terpyridine (CAS: 1148-79-4), a critical heterocyclic compound widely employed in coordination chemistry, supramolecular assembly, and cutting-edge material science. As a leading manufacturer and supplier in China, we provide high-purity terpyridine for your research and industrial needs.

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Key Advantages of Our Terpyridine Offering

Exceptional Purity and Consistency

Our 2,2':6',2''-Terpyridine is manufactured to meet stringent purity standards (≥97% min), ensuring reliable performance in sensitive coordination chemistry and catalysis applications. Buy with confidence from a dedicated supplier.

Broad Application Spectrum

From academic research in supramolecular chemistry to industrial applications in material science, this heterocyclic ligand is key. We support your diverse needs for this chemical intermediate.

Expert Sourcing and Support

Leverage our expertise as a leading chemical manufacturer and supplier in China. We provide detailed product information and responsive customer service to facilitate your purchase of terpyridine.

Diverse Applications of Terpyridine

Coordination Chemistry

As an NNN-tridentate ligand, terpyridine is fundamental for synthesizing diverse metal complexes with applications in catalysis and analytical chemistry, such as for the spectrophotometric determination of metals.

Supramolecular Chemistry

Utilized extensively in constructing intricate supramolecular structures like helicates, catenanes, and dendrimers, showcasing its ability to direct molecular self-assembly.

Materials Science

Functionalized terpyridine ligands are vital components in semiconductors and solar panels, contributing to enhanced electronic and photovoltaic properties. Purchase this key material for your next innovation.

Catalysis

Terpyridine-metal complexes are employed as catalysts in various organic transformations, including alcohol oxidation and aromatic compound carbonylation, making them valuable for chemical synthesis.