High-Purity Nitrogenous MOF Ligand: 4,4'-(5'-(4-(pyridin-4-yl)phenyl)-[1,1':3,1''-terphenyl]-4,4''-diyl)dipyridine

Discover our premium 4,4'-(5'-(4-(pyridin-4-yl)phenyl)-[1,1':3,1''-terphenyl]-4,4''-diyl)dipyridine, a critical nitrogenous MOF ligand manufactured to the highest standards. Ideal for advanced MOF and COF synthesis, this product ensures exceptional performance in your material science applications. We are a trusted supplier offering competitive pricing and reliable delivery.

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Key Advantages of Our MOF Ligand

Exceptional Purity for Optimal Performance

Our commitment to quality ensures a minimum purity of 97% for this vital MOF ligand, enabling superior framework formation and predictable performance in your applications. Buy with confidence from our trusted manufacturer.

Versatile Building Block for Frameworks

This pyridine-based terphenyl dipyridine derivative serves as a critical building block for sophisticated MOFs and COFs, offering broad potential in catalysis, gas separation, and advanced material design. Explore its applications by purchasing today.

Competitive Sourcing and Reliable Supply

As a leading supplier in China, we offer competitive pricing and a stable supply chain for this high-demand MOF ligand. Contact us for a quote and to secure your material needs efficiently.

Applications in Advanced Materials Synthesis

MOF and COF Synthesis

This ligand is indispensable for the synthesis of advanced Metal-Organic Frameworks (MOFs) and Covalent Organic Frameworks (COFs), crucial for cutting-edge research and industrial applications.

Catalysis

The unique structure of MOFs derived from this ligand makes them excellent candidates for heterogeneous catalysis, offering high surface area and tunable active sites. We are your go-to supplier for these critical precursors.

Gas Adsorption and Separation

MOFs synthesized with this ligand are highly effective in selective gas adsorption and separation processes, including CO2 capture and hydrogen storage. Purchase this material to enhance your separation technologies.

Materials Science Research

Facilitate groundbreaking research in materials science by utilizing this high-quality, versatile organic linker for the development of novel functional materials.