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1,2-Bis(phosphino)benzene

1,2-Bis(phosphino)benzene

  • Catalogue Number : SC11547
  • CAS Number : 80510-04-9
  • MDL Number : MFCD00142463
  • Molecular Formula : C6H8P2
  • Molecular Weight : 142.08
  • Purity : 98% Min.
  • Category : Catalysts and Ligands
Description

Catsyn offer gram to tons of 1,2-Bis(phosphino)benzene | CAS 80510-04-9, its formula is C6H8P2, molecular weight is 142.08g/mol and the purity is usually 98% Min..

Synonyms : 1,2-BIS(PHOSPHINO)BENZENE;1,2-PHENYLENEBISPHOSPHINE;O-BIS(PHOSPHINO)BENZENE

This substance (CAS No.: 80510-04-9), acting as both a catalyst and a ligand, typically contains specific functional groups or coordinating atoms (such as nitrogen, oxygen, and phosphorus) in its molecular structure. These functional groups can regulate the electron cloud distribution of the reactive center through electronic effects (such as inductive and conjugation effects), thereby influencing the selectivity and efficiency of the catalytic reaction. Its physicochemical properties include suitable solubility, thermal stability, and chemical inertness, ensuring structural integrity within the catalytic system. The conjugated system within the molecule (such as aromatic rings or π bonds) can lower energy levels, promote electron transfer, and enhance catalytic activity. As a ligand, its spatial configuration and electron-donating ability directly affect the coordination environment of the metal center, stabilizing the transition state or intermediate to increase the reaction rate. Simultaneously, its stability determines the number of times the catalyst can be recycled and its lifetime. This substance has wide applications in organic synthesis, homogeneous catalysis, and materials science. As a ligand, it can form highly efficient catalysts with transition metals (such as palladium and rhodium) for key steps in cross-coupling reactions and asymmetric hydrogenation, significantly improving product yield and stereoselectivity. In OLED material preparation, its coordination properties can regulate the luminescence characteristics of metal complexes, optimizing device efficiency and lifetime. As a catalyst, its core function is to reduce reaction activation energy and shorten reaction pathways, while achieving green chemistry goals through selective catalysis. In industrial production, its value lies in improving atom economy, reducing byproduct generation, and promoting the transformation of chemical processes towards high efficiency and sustainability, especially in the synthesis of fine chemicals and high-end materials, where it holds an irreplaceable industry position.

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