Organofluorine / Alfa Chemistry
Heptafluorotetrahydro(nonafluorobutyl)furan

Heptafluorotetrahydro(nonafluorobutyl)furan

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Heptafluorotetrahydro(nonafluorobutyl)furan

Heptafluorotetrahydro(nonafluorobutyl)furan is an advanced fluorinated fine chemical known for its unique structure, incorporating seven fluorine atoms and a tetrahydrofuran ring. This compound is utilized in various high-tech applications due to its exceptional chemical stability, resistance to solvents, and low surface tension. It is extensively used as a cleaning agent in the power industry, where its properties enable enhanced performance and longevity. The presence of fluorine atoms imparts a high degree of thermal and chemical resistance, making it a valuable component in industries that demand durable and efficient solutions.

Technical Index

Product NameHeptafluorotetrahydro(nonafluorobutyl)furan
CatalogOFC00119
CAS40464-54-8
Molecular FormulaC8F16O
AppearanceColorless and odorless clear liquid
Purity>99.9%
Viscosity at 25°C0.8-1.0 mPa·s
Density at 25°C1.78 g/cm3
Boiling Range85-115 °C

Features

  • Low surface tension. This compound is characterized by its significantly low surface tension, which is a measure of the cohesive forces at the surface of a liquid. This property allows it to spread easily over surfaces and penetrate small gaps and crevices, making it ideal as a component in specialty cleaning agents where effective surface coverage is essential.
  • High boiling point. The high boiling point signifies the compound's ability to remain in a liquid state at elevated temperatures, reducing the rate of evaporation and loss. This feature is advantageous in industrial processes that operate under high-temperature conditions, such as heat transfer systems or specialized chemical reactions, ensuring efficiency and reliability over a broad thermal range.
  • Exceptional stability. Heptafluorotetrahydro(nonafluorobutyl)furan is known for its outstanding stability against heat and chemical reactions. This stability means that it does not easily decompose or react with other substances under normal operating conditions. Such resilience makes it an excellent choice for environments that involve exposure to harsh chemicals or thermal cycling, maintaining its structural integrity and functionality over time.
  • Non-toxic and non-flammable. This compound's non-toxic nature ensures that it does not pose significant health risks to humans or ecological systems when handled properly, making it safer for use in consumer products and industrial applications. Moreover, its non-flammable property reduces the risk of fire, which is a critical safety feature in many operational contexts.

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