High-Purity 4,4'-Diethynyl-2,2'-Bipyridine CAS 133810-44-3: Your Reliable Supplier for Advanced Materials

Discover the exceptional quality and versatility of 4,4'-Diethynyl-2,2'-Bipyridine, a crucial organic intermediate for advanced research and development. As a leading manufacturer and supplier in China, we offer competitive pricing and ensure consistent supply stability for your critical projects.

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Advantages of Sourcing 4,4'-Diethynyl-2,2'-Bipyridine

High Purity and Consistency

Our 4,4'-Diethynyl-2,2'-bipyridine is rigorously tested to meet 97%+ purity standards, crucial for predictable results in advanced synthesis and materials applications. Partner with a dependable supplier for your research needs.

Versatile Building Block

This ethynylated bipyridine derivative serves as a critical building block for designing novel Metal-Organic Frameworks (MOFs), Covalent Organic Frameworks (COFs), and functional ligands. Explore its potential for your next project.

Reliable China-Based Supply Chain

Leverage our established supply chain as a dedicated manufacturer in China. We ensure timely delivery and responsive customer support to meet your procurement requirements efficiently.

Key Applications in Modern Chemistry

Materials Science Research

Utilized in the synthesis of advanced materials like COFs and MOFs, offering unique porous structures for gas storage, separation, and catalysis. Purchase this essential precursor for cutting-edge materials development.

Ligand Synthesis for Catalysis

The bipyridine core with ethynyl groups makes it an excellent precursor for synthesizing sophisticated ligands used in homogeneous catalysis, improving reaction efficiency and selectivity.

Organic Synthesis Intermediate

Serves as a versatile intermediate in complex organic transformations, facilitating the creation of novel heterocyclic compounds with diverse functionalities.

OLED and Photoelectric Materials

Potential applications in the development of organic light-emitting diodes (OLEDs) and other photoelectric devices due to its conjugated structure and pyridine moieties.