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Catsyn offer gram to tons of Tris(2,4,6-trimethylphenyl)phosphine | CAS 23897-15-6, its formula is C27H33P, molecular weight is 388.52g/mol and the purity is usually 98% Min..
Synonyms : TRIMESITYLPHOSPHINE;TRIS(2,4,6-TRIMETHYLPHENYL)PHOSPHINE
This substance (CAS No.: 23897-15-6), acting as both a catalyst and a ligand, typically contains specific functional groups or heteroatoms (such as nitrogen, oxygen, and phosphorus) in its molecular structure. These groups bind to the central metal ion via covalent or coordinate bonds, forming stable coordination compounds. Its physicochemical properties include good solubility in specific solvents, a moderate melting and boiling point range, and the potential presence of conjugated systems (such as aromatic rings or conjugated double bonds) within the molecule, enhancing electron delocalization and thus influencing its electronic structure and energy level distribution. This conjugated system not only improves molecular stability but also optimizes its catalytic activity and coordination performance by adjusting the energy difference between the frontier orbitals (HOMO and LUMO). As a catalyst, this substance can accelerate specific chemical reactions by lowering the activation energy; as a ligand, its electronic effects (such as electron-donating or electron-withdrawing capabilities) can finely modulate the redox properties and spatial configuration of the central metal, thereby affecting the selectivity and efficiency of the catalytic reaction. This substance demonstrates significant application value in materials science, organic synthesis, and OLED fields. As a catalyst, it is widely used in homogeneous catalytic reactions, such as cross-coupling reactions and asymmetric catalytic synthesis, significantly improving the yield and stereoselectivity of target products while reducing side reactions. In the ligand field, its unique structure makes it an ideal choice for constructing metal-organic frameworks (MOFs) or complexes, which exhibit excellent performance in gas adsorption, separation, and catalytic conversion. Furthermore, in OLED display technology, this substance, as a functional ligand or dopant, can optimize the electron transport performance of the emissive layer, improve the luminous efficiency and stability of devices, and promote the development of flexible displays and high-efficiency lighting technologies. Its industry value lies in meeting the needs of different fields for high-performance catalysts and ligands through structural design and functional modification, driving technological upgrades and sustainable development in related industries.