(3aS,3a'S,8aR,8a'R)-2,2'-Cyclohexylidenebis[8,8a-dihydro-3aH-indeno[1,2-d]oxazole]

≥98%,99%e.e.

  • Product Code: 59698
  CAS:    182122-13-0
Molecular Weight: 398.5 g./mol Molecular Formula: C₂₆H₂₆N₂O₂
EC Number: MDL Number:
Melting Point: Boiling Point: 554.0±50.0 °C
Density: 1.42±0.1 g/mL Storage Condition: room temperature, dry
Product Description: This chemical is primarily utilized in the field of organic synthesis, where it serves as a versatile intermediate for constructing complex molecular architectures. Its unique structure, featuring fused oxazole and indene rings, makes it valuable in the development of chiral catalysts and ligands. These catalysts are often employed in asymmetric synthesis, enabling the production of enantiomerically pure compounds, which are crucial in pharmaceuticals and fine chemicals. Additionally, its rigid framework is exploited in materials science for designing advanced polymers and liquid crystals, where precise control over molecular orientation and stability is required. The compound's ability to form stable, well-defined structures also makes it a candidate for use in supramolecular chemistry and nanotechnology applications.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.100 10-20 days $80.20
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(3aS,3a'S,8aR,8a'R)-2,2'-Cyclohexylidenebis[8,8a-dihydro-3aH-indeno[1,2-d]oxazole]
This chemical is primarily utilized in the field of organic synthesis, where it serves as a versatile intermediate for constructing complex molecular architectures. Its unique structure, featuring fused oxazole and indene rings, makes it valuable in the development of chiral catalysts and ligands. These catalysts are often employed in asymmetric synthesis, enabling the production of enantiomerically pure compounds, which are crucial in pharmaceuticals and fine chemicals. Additionally, its rigid framework is exploited in materials science for designing advanced polymers and liquid crystals, where precise control over molecular orientation and stability is required. The compound's ability to form stable, well-defined structures also makes it a candidate for use in supramolecular chemistry and nanotechnology applications.
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