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Acetylacetonato(1,5-cyclooctadiene)rhodium(I)

Acetylacetonato(1,5-cyclooctadiene)rhodium(I)

  • Catalogue Number : SC10105
  • CAS Number : 12245-39-5
  • MDL Number : MFCD00075046
  • Molecular Formula : C8H12.C5H7O2Rh
  • Molecular Weight : 310.201
  • Purity : 98% Min.
  • Category : Catalysts and Ligands
Description

Catsyn offer gram to tons of Acetylacetonato(1,5-cyclooctadiene)rhodium(I) | CAS 12245-39-5, its formula is C8H12.C5H7O2Rh, molecular weight is 310.201g/mol and the purity is usually 98% Min..

Synonyms : (1,5-CYCLOOCTADIENE)(2,4-PENTANDIONATO)RHODIUM(I);(1,5-CYCLOOCTADIENE)RHODIUM(I) 2,4-PENTANEDIONATE;(ACETYLACETONATO)(ETA-CYCLOOCTA-1,5-DIENE)RHODIUM (I);ACETYLACETONATE(1,5-CYCLOOCTADIENE)RHODIUM;ACETYLACETONATO(1,5-CYCLOOCTADIENE)RHODIUM;ACETYLACETONATO(1,5-CYCLOOCTADIENE)RHODIUM(I);RH(ACAC)(COD);RHODIUM (1,5-CYCLOOCTADIENE)-2,4-PENTANEDIONATE

This substance (CAS No.: 12245-39-5), used as both a catalyst and a ligand, typically contains specific functional groups or metal binding sites in its molecular structure, endowing it with unique physicochemical properties. Its electronic effects can be modulated by the electron-withdrawing or electron-donating properties of substituents, thereby influencing the molecular orbital energy level distribution and forming an effective conjugated system to stabilize reaction intermediates. Under specific conditions, this substance exhibits good thermal and chemical stability. Its catalytic activity stems from precise control of the reaction pathway, achieving efficient catalysis by lowering the activation energy or stabilizing the transition state. As a ligand, its spatial configuration and electron-donating ability can form stable coordination bonds with the metal center, regulating the electronic state and geometry of the metal center, thus optimizing catalytic performance. The expansion of the conjugated system may enhance intramolecular electron delocalization, further improving its coordination selectivity and catalytic adaptability. In application areas, this substance can be widely used as a catalyst in organic synthesis reactions, such as asymmetric catalysis and cross-coupling reactions, significantly improving reaction efficiency and product selectivity. As a ligand, its synergistic effect with transition metals is prominent in homogeneous catalytic systems, for example, regulating the behavior of metal active centers in polymerization, hydrogenation, or oxidation reactions. Its core function lies in achieving precise control of the catalytic process through molecular design, meeting the industrial demand for high selectivity and high atom economy. In terms of industry value, the application of this substance can reduce energy consumption and waste generation, promoting the development of green chemistry processes. Simultaneously, in high-end manufacturing fields such as pharmaceuticals, materials science, and OLEDs, it plays an irreplaceable role as a key intermediate or additive in improving product performance and process stability.

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