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Catsyn offer gram to tons of Dichloro(1,10-phenanthroline)palladium(II) | CAS 14783-10-9, its formula is C12H8N2.Cl2Pd, molecular weight is 357.535g/mol and the purity is usually 98% Min..
Synonyms : DICHLORO(1,10-PHENANTHROLINE)PALLADIUM(II)
This substance (CAS No.: 14783-10-9), used as a catalyst and ligand, typically contains specific functional groups or metal binding sites in its molecular structure, enabling it to regulate the electron distribution of the reactive center through electronic effects (such as inductive and conjugation effects). Its physicochemical properties include suitable solubility, thermal stability, and chemical inertness, ensuring structural integrity during catalysis or coordination. The molecule may contain conjugated systems (such as π-π or p-π conjugation), which promote electron transfer by reducing energy level differences, thereby enhancing catalytic activity or coordination ability. Its stability is influenced by both steric hindrance and electronic effects; highly stable ligands can effectively prevent metal center deactivation, while catalytic activity depends on the strength of its interaction with the substrate or reaction intermediate. As a ligand, this substance can form stable coordination bonds with the metal center through lone pairs of electrons or π orbitals, regulating the oxidation state and geometry of the metal, thus affecting the energy barrier and selectivity of the catalytic cycle. In application fields, this substance is widely used in organic synthesis catalysis, homogeneous catalysis, and coordination chemistry research. As a key ligand, it can significantly enhance the activity and selectivity of transition metal catalysts, exhibiting excellent performance in cross-coupling reactions, asymmetric catalysis, and hydrogenation reactions. Its core function lies in precisely controlling the electronic state and spatial environment of the metal center to achieve targeted optimization of the reaction pathway, reduce by-product formation, and improve atom utilization. In the field of OLED materials, this substance can participate in the design of metal complexes as a functional ligand, improving device efficiency and lifetime by adjusting the energy level structure of the light-emitting layer. In industrial catalysis, its high stability and reusability reduce production costs and promote the development of green chemistry processes. This substance has significant value in both academic research and industrial production, serving as a bridge connecting fundamental catalysis theory with practical applications.