Atomfair Unii-720P7594ZM C55H46OP3Rh-

Description Unii-720P7594ZM is a highly specialized organometallic compound with the molecular formula C55H46OP3Rh-, featuring a rhodium center coordinated with carbon monoxide, hydride, and triphenylphosphane ligands. This complex is of significant interest in advanced catalytic applications due to its unique electronic and steric properties. With a CAS number of 17185-29-4 , this compound is rigorously synthesized and purified to meet the highest standards for research and industrial use. Its well-defined structure makes it an excellent candidate for mechanistic studies in homogeneous catalysis, particularly in hydrogenation and hydroformylation reactions. Packaged under inert conditions to ensure stability, this product is ideal for researchers…

Description

Description

Unii-720P7594ZM is a highly specialized organometallic compound with the molecular formula C55H46OP3Rh, featuring a rhodium center coordinated with carbon monoxide, hydride, and triphenylphosphane ligands. This complex is of significant interest in advanced catalytic applications due to its unique electronic and steric properties. With a CAS number of 17185-29-4, this compound is rigorously synthesized and purified to meet the highest standards for research and industrial use. Its well-defined structure makes it an excellent candidate for mechanistic studies in homogeneous catalysis, particularly in hydrogenation and hydroformylation reactions. Packaged under inert conditions to ensure stability, this product is ideal for researchers seeking high-purity organometallic reagents.

  • CAS No: 17185-29-4
  • Molecular Formula: C55H46OP3Rh-
  • Molecular Weight: 918.8
  • Exact Mass: 918.18165
  • Monoisotopic Mass: 918.18165
  • Charge: -1
  • IUPAC Name: carbon monoxide;hydride;rhodium;triphenylphosphane
  • SMILES: [H-].[C-]#[O+].C1=CC=C(C=C1)P(C2=CC=CC=C2)C3=CC=CC=C3.C1=CC=C(C=C1)P(C2=CC=CC=C2)C3=CC=CC=C3.C1=CC=C(C=C1)P(C2=CC=CC=C2)C3=CC=CC=C3.[Rh]
  • Synonyms: UNII-720P7594ZM

Application

Unii-720P7594ZM is primarily utilized as a catalyst or catalyst precursor in homogeneous catalytic processes, such as hydrogenation and hydroformylation of alkenes. Its rhodium-phosphine coordination sphere enables selective activation of small molecules, making it valuable for fine chemical synthesis. Researchers also employ this compound in mechanistic studies to explore reaction pathways and ligand effects in transition-metal catalysis.

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