Perfluorobutyl Iodide (CAS 423-39-2): Properties, Applications, and Synthesis of a Key Fluorinated Intermediate

Discover the essential properties and diverse applications of Perfluorobutyl Iodide (C4F9I), a critical intermediate in the world of fine chemicals. Learn about its synthesis and why it's a vital component for advanced chemical processes.

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Key Advantages

High Purity and Stability

Benefit from Perfluorobutyl iodide's impressive purity of 99.0%min and inherent stability, crucial for consistent results in Nonafluoro-1-iodobutane applications and complex chemical reactions.

Versatile Intermediate

Leverage the versatility of C4F9I as a Perfluorinated Chemical Intermediate. Its structure allows participation in a wide range of organic synthesis reactions, making it a cornerstone for developing new materials.

Advanced Material Precursor

Utilize Perfluorobutyl iodide as a precursor for sophisticated fluorinated finishing agents and surfactants, driving innovation in high-performance materials through expert Perfluorobutyl iodide synthesis.

Key Applications

Organic Synthesis

Perfluorobutyl iodide serves as a vital intermediate in various organic synthesis reactions, enabling the creation of complex fluorinated molecules and specialty chemicals.

Electronic Materials

The unique electronic properties of C4F9I suggest potential applications in the preparation of advanced electronic components and semiconductor materials, highlighting its importance in modern technology.

Surface Treatment Agents

Due to its low surface energy, Perfluorobutyl iodide can be used in the development of coatings and surface treatments, imparting desirable hydrophobic and lipophobic properties.

Polymerization Catalysis

As an organocatalyst, Perfluorobutyl iodide plays a role in specific polymerization reactions, contributing to the development of advanced polymers with tailored properties.