The Role of Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate in Modern Chemistry
The landscape of modern chemistry is constantly evolving, driven by the demand for novel materials and sophisticated synthetic pathways. At the heart of this progress are versatile chemical intermediates that enable chemists to construct complex molecular structures. Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate (CAS 1762-36-3) is one such compound, recognized for its utility in diverse chemical applications, ranging from material science to the development of pharmaceutical intermediates.
Understanding the Chemical Profile
Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate, with its molecular formula C16H16N2O4, is a bipyridine derivative featuring two ethyl ester groups. This specific structural arrangement imparts unique chemical properties, making it a sought-after compound for various synthesis projects. Its physical characteristics, such as being an off-white to light yellow solid with a melting point of 81-82 °C, are important considerations for handling and formulation. For researchers and manufacturers, understanding these properties, along with its CAS number 1762-36-3, is crucial for effective procurement and application.
Applications in Research and Industry
The significance of Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate in contemporary chemistry cannot be overstated. It serves as an indispensable building block in:
- Ligand Synthesis: Its bipyridine core makes it an excellent precursor for synthesizing ligands used in coordination chemistry and catalysis. These ligands are vital for tuning the reactivity and selectivity of metal catalysts in various industrial processes.
- Material Science: The unique electronic and structural properties of bipyridine derivatives make them valuable in the development of functional materials, including those for organic electronics, optoelectronic devices, and supramolecular assemblies.
- Pharmaceutical Research: As a heterocyclic intermediate, it plays a role in the synthesis of potential drug candidates and pharmaceutical intermediates, contributing to advancements in medicinal chemistry.
Professionals looking to purchase this chemical will find that reliable suppliers, particularly those based in China, offer competitive pricing and high purity grades essential for demanding applications.
Procurement Insights for Chemical Buyers
For those in the market to buy Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate, engaging with established chemical manufacturers is key. When searching online, utilizing specific phrases like 'Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate price' or 'CAS 1762-36-3 manufacturer China' will yield precise results. Procurement specialists should prioritize suppliers who can provide detailed product specifications, offer consistent quality, and ensure timely delivery. It is common practice to request quotations and free samples to assess suitability and establish the reliability of a supplier before placing large orders. The availability of this compound from various international suppliers underscores its importance in the global chemical supply chain.
In summary, Diethyl [2,2'-bipyridine]-3,3'-dicarboxylate (CAS 1762-36-3) is a cornerstone intermediate for innovation in chemistry. Its structural versatility and reliable availability from leading manufacturers empower chemists to push the boundaries of scientific discovery.
Perspectives & Insights
Chem Catalyst Pro
“It serves as an indispensable building block in: Ligand Synthesis: Its bipyridine core makes it an excellent precursor for synthesizing ligands used in coordination chemistry and catalysis.”
Agile Thinker 7
“These ligands are vital for tuning the reactivity and selectivity of metal catalysts in various industrial processes.”
Logic Spark 24
“Material Science: The unique electronic and structural properties of bipyridine derivatives make them valuable in the development of functional materials, including those for organic electronics, optoelectronic devices, and supramolecular assemblies.”