High-Purity 2,2'-Bipyridine-5,5'-dicarbonitrile: A Versatile Ligand for Advanced Chemical Applications
Discover the key properties and applications of this vital intermediate for MOFs, OLEDs, and catalysis.
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Bipyridine Dicarbonitrile
This high-purity compound serves as a critical building block in advanced chemical synthesis. Its unique structure makes it an excellent bidentate chelating ligand, capable of forming stable complexes with various metal ions, thereby finding utility as an oxidation-reduction indicator.
- Explore the potential of using 2,2'-Bipyridine-5,5'-dicarbonitrile CAS 1802-29-5 in novel MOF/COF ligand development.
- Leverage this heterocyclic organic compound for its applications in OLED materials and organic synthesis.
- Understand why bipyridine derivatives are crucial for advancements in metal catalysis research.
- Inquire about the competitive price and availability of this essential organic synthesis intermediate for your projects.
Key Advantages
High Purity and Quality
Ensuring high purity (97% min) of 2,2'-Bipyridine-5,5'-dicarbonitrile is crucial for consistent results in sensitive applications like MOF/COF ligand synthesis.
Versatile Chelating Properties
As a bidentate chelating ligand, it forms stable complexes with metal ions, opening doors for applications in catalysis and as oxidation-reduction indicators.
Broad Application Spectrum
Its role as an organic synthesis intermediate makes it invaluable for creating advanced materials, including OLED materials and components for metal catalysis.
Key Applications
Ligand Synthesis
Used in the synthesis of ligands for Metal-Organic Frameworks (MOFs) and Covalent Organic Frameworks (COFs), enabling tailored material properties.
Organic Electronics
Serves as an intermediate in the development of materials for Organic Light-Emitting Diodes (OLEDs) and other optoelectronic devices.
Metal Catalysis
Functions as a key component or precursor for metal catalysts, facilitating a wide range of chemical transformations.
Research and Development
An essential chemical for academic and industrial research, particularly in heterocyclic chemistry and material science innovation.