Enhancing Material Science: The Chemistry of 1,2-bis(4-(4-pyridyl)-phenyl)ethane-1,2-dione
The field of materials science is driven by the development of novel compounds that enable the creation of materials with unprecedented properties. Among these, organic molecules that act as building blocks for complex structures like Metal-Organic Frameworks (MOFs) are of paramount importance. 1,2-bis(4-(4-pyridyl)-phenyl)ethane-1,2-dione (CAS: 1352050-00-0) is a prime example of such a crucial chemical intermediate.
This compound, with the molecular formula C24H16N2O2 and a molecular weight of 364.4, is characterized by its symmetrical structure featuring two pyridyl rings linked by a phenyl ethane dione bridge. This architecture makes it an ideal monomer linker for the self-assembly of MOFs. The pyridine nitrogen atoms are Lewis basic sites capable of coordinating with metal ions, forming the nodes of the MOF structure. Its solubility in polar aprotic solvents like DMF and DMSO facilitates its use in various solvothermal or room-temperature synthesis methods. For researchers looking to buy specialized organic synthesis reagents, this compound offers a unique combination of reactivity and structural integrity.
As a leading manufacturer and supplier in China, NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to producing 1,2-bis(4-(4-pyridyl)-phenyl)ethane-1,2-dione with exceptional purity. High purity is not merely a specification; it is fundamental to achieving the desired structural order and functional performance in the final MOF material. When considering the purchase of such a critical component, opting for a manufacturer with robust quality control systems and a commitment to technical excellence is vital. We offer competitive pricing for bulk orders and encourage prospective buyers to request a quote to assess our value proposition.
The applications of MOFs synthesized using this linker are diverse, including highly efficient gas storage and separation, heterogeneous catalysis, and sensing platforms. The precise control over pore size and chemical environment offered by MOFs makes them indispensable in addressing global challenges. Therefore, the reliable sourcing of monomer linkers like 1,2-bis(4-(4-pyridyl)-phenyl)ethane-1,2-dione is a strategic necessity for companies and institutions at the forefront of materials science innovation. We invite R&D scientists and procurement professionals to explore our capabilities and learn why we are a trusted source for high-quality chemical intermediates.
Maintaining the quality of this chemical is simple with proper storage. Storing 1,2-bis(4-(4-pyridyl)-phenyl)ethane-1,2-dione sealed at room temperature helps preserve its reactivity and structural integrity for your demanding applications. Partner with us to ensure the success of your next materials science project.
Perspectives & Insights
Core Pioneer 24
“We offer competitive pricing for bulk orders and encourage prospective buyers to request a quote to assess our value proposition.”
Silicon Explorer X
“The applications of MOFs synthesized using this linker are diverse, including highly efficient gas storage and separation, heterogeneous catalysis, and sensing platforms.”
Quantum Catalyst AI
“The precise control over pore size and chemical environment offered by MOFs makes them indispensable in addressing global challenges.”