Di(1-adamantyl)benzylphosphine

95 %

  • Product Code: 123101
  CAS:    395116-70-8
Molecular Weight: 392.56 g./mol Molecular Formula: C₂₇H₃₇P
EC Number: MDL Number: MFCD05861603
Melting Point: 183°C Boiling Point:
Density: Storage Condition: room temperature
Product Description: Di(1-adamantyl)benzylphosphine is primarily utilized as a ligand in organometallic chemistry and catalysis. Its bulky adamantyl groups provide steric hindrance, making it effective in stabilizing metal complexes, particularly in transition metal-catalyzed reactions. This ligand is often employed in cross-coupling reactions, such as Suzuki-Miyaura and Heck reactions, where it enhances selectivity and efficiency. Additionally, its unique structure is beneficial in the development of catalysts for polymerization processes, including olefin polymerization, where it helps control polymer microstructure. The ligand’s robustness and stability under harsh reaction conditions make it suitable for applications in both academic research and industrial processes.
Product Specification:
Test Specification
Purity (%) 95-100
31P Nmr Spectrum Conforms To Structure
Appearance White To Yellow Powder
Infrared Spectrometry Conforms To Structure
Proton Nmr Spectrum Conforms To Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.200 10-20 days ฿770.00
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1.000 10-20 days ฿2,150.00
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5.000 10-20 days ฿7,320.00
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Di(1-adamantyl)benzylphosphine
Di(1-adamantyl)benzylphosphine is primarily utilized as a ligand in organometallic chemistry and catalysis. Its bulky adamantyl groups provide steric hindrance, making it effective in stabilizing metal complexes, particularly in transition metal-catalyzed reactions. This ligand is often employed in cross-coupling reactions, such as Suzuki-Miyaura and Heck reactions, where it enhances selectivity and efficiency. Additionally, its unique structure is beneficial in the development of catalysts for polymerization processes, including olefin polymerization, where it helps control polymer microstructure. The ligand’s robustness and stability under harsh reaction conditions make it suitable for applications in both academic research and industrial processes.
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