2,5-Bis(trimethylsilyl)-1,4-phenylene Bis(trifluoromethanesulfonate)

98%

  • Product Code: 77059
  CAS:    613676-07-6
Molecular Weight: 518.59 g./mol Molecular Formula: C₁₄H₂₀F₆O₆S₂Si₂
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Density: Storage Condition: room temperature
Product Description: This chemical is primarily used as a reagent in organic synthesis, particularly in the formation of complex organic molecules. It serves as a key intermediate in the preparation of aromatic compounds, enabling the introduction of functional groups through its reactive trifluoromethanesulfonate (triflate) groups. Its trimethylsilyl groups provide stability and facilitate specific reactions, making it valuable in the synthesis of polymers, pharmaceuticals, and advanced materials. Additionally, it is employed in cross-coupling reactions, which are essential for creating carbon-carbon bonds in the development of fine chemicals and active pharmaceutical ingredients. Its unique structure allows for precise control in synthetic pathways, enhancing efficiency in research and industrial applications.
Product Specification:
Test Specification
APPEARANCE White to Light yellow powder to crystal
PURITY 97.5-100
Infrared spectrum Conforms to Structure
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.200 10-20 days £244.26
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2,5-Bis(trimethylsilyl)-1,4-phenylene Bis(trifluoromethanesulfonate)
This chemical is primarily used as a reagent in organic synthesis, particularly in the formation of complex organic molecules. It serves as a key intermediate in the preparation of aromatic compounds, enabling the introduction of functional groups through its reactive trifluoromethanesulfonate (triflate) groups. Its trimethylsilyl groups provide stability and facilitate specific reactions, making it valuable in the synthesis of polymers, pharmaceuticals, and advanced materials. Additionally, it is employed in cross-coupling reactions, which are essential for creating carbon-carbon bonds in the development of fine chemicals and active pharmaceutical ingredients. Its unique structure allows for precise control in synthetic pathways, enhancing efficiency in research and industrial applications.
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