Unlock Advanced Material Possibilities with Trifluoropropyl Methylcyclotrisiloxane

Discover the unique properties and applications of this high-performance fluorosilicone, a key ingredient for innovative material solutions. Explore its advantages as a specialty chemical.

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Key Advantages Offered

Exceptional Purity and Quality

Our Tris[(3,3,3-trifluoropropyl)methyl]cyclotrisiloxane boasts a high purity of 97%, ensuring reliable performance and predictable results in your specialized applications, vital for achieving optimal outcomes in advanced material science.

Versatile Fine Chemical Intermediate

As a versatile fine chemical, this fluorosilicone serves as a crucial intermediate for developing new materials, polymers, and coatings, enabling innovation in various industrial sectors and supporting your product development goals.

Stable Physical and Chemical Properties

With a density of 1.24 g/cm³ and a refractive index of 1.38, this cyclotrisiloxane offers predictable handling and performance characteristics, essential for manufacturers working with sensitive formulations and requiring consistent product attributes.

Key Applications

Advanced Coatings

Utilize this fluorosilicone's unique properties for developing high-performance coatings that offer enhanced durability, chemical resistance, and thermal stability, crucial for demanding industrial environments.

Specialty Polymers

Incorporate this compound into polymer synthesis to create materials with tailored properties, such as improved heat resistance and reduced surface tension, supporting innovation in the specialty polymers sector.

Electronic Materials

Its dielectric properties and thermal stability make it suitable for specialized electronic applications, contributing to the development of advanced components and materials for the electronics industry.

Chemical Synthesis Building Block

Serve as a reliable supplier in China for this essential building block in complex chemical synthesis, enabling researchers and manufacturers to create novel organic silicon compounds.