Pentafluorophenyltriethoxysilane (CAS 20083-34-5): A Versatile Organosilicon Intermediate for Advanced Materials

Discover Pentafluorophenyltriethoxysilane, a key organosilicon compound with CAS 20083-34-5, prized for its unique properties in advanced material synthesis. As a leading manufacturer and supplier, we offer high-purity grades essential for sophisticated chemical applications. Explore how this intermediate can enhance your product's performance.

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Key Advantages of Sourcing Our Pentafluorophenyltriethoxysilane

Reliable Supply & Manufacturing

As a dedicated manufacturer and supplier, we ensure a stable and consistent supply of Pentafluorophenyltriethoxysilane, meeting the demands of industrial production and research laboratories. Buy with confidence from a trusted source.

Enhanced Material Properties

The incorporation of the pentafluorophenyl group and the siloxane structure imparts unique thermal and chemical resistance properties, making it ideal for demanding applications in specialty chemicals and advanced materials.

Facilitating Complex Synthesis

This compound serves as a crucial intermediate for the synthesis of complex fluorinated organic molecules and polymers. We support your R&D efforts by providing high-quality raw materials for your innovative projects.

Diverse Applications of Pentafluorophenyltriethoxysilane

Advanced Material Synthesis

Utilize Pentafluorophenyltriethoxysilane as a key building block for novel polymers, specialty resins, and functional materials where fluorinated moieties are desired for enhanced performance, such as in high-temperature applications or specific electronic properties.

Surface Modification

This organosilicon compound is excellent for modifying surfaces, offering improved hydrophobicity, chemical resistance, and adhesion. It's a valuable component for developing advanced coatings and functionalized substrates.

Organic Synthesis

As an arylsilane, it plays a vital role in organic chemistry, particularly in palladium-catalyzed cross-coupling reactions to form carbon-carbon bonds, enabling the synthesis of complex fluorinated aromatic compounds.

Optical Coatings

Its ability to form hydrogen-free silicone resins makes it a preferred precursor for optical coatings, contributing to clarity, durability, and specific refractive index requirements in optical applications.