
The product, High Quality pentafluorobenzonitrile with CAS number 773 - 82 - 0, is a chemical compound that stands out in the market due to its high quality and best price.
Chemical Formula: C₇F₅N
Molecular Weight: Approximately 207.07 g/mol
Appearance: It usually appears as a colorless to light - yellow liquid at room temperature.
Boiling Point: Around 164 - 167°C
Melting Point: About - 31°C
Density: 1.55 g/cm³
Pentafluorobenzonitrile has a wide range of applications across different industries.
Pharmaceutical Industry: It serves as an important intermediate in the synthesis of certain pharmaceuticals. Its unique chemical structure allows it to participate in various chemical reactions that are crucial for creating specific drug molecules. For example, it can be used in the synthesis of drugs targeting certain rare diseases, where the precise chemical properties of pentafluorobenzonitrile are needed to achieve the desired biological activity.
Agrochemical Industry: In the field of agrochemicals, it is used in the development of pesticides. The compound's chemical stability and reactivity make it suitable for creating effective and safe pesticides that can protect crops from pests and diseases.
Material Science: It can be incorporated into the synthesis of high - performance polymers. These polymers often have enhanced properties such as improved heat resistance, chemical resistance, and mechanical strength, making them useful in various engineering applications.
When handling pentafluorobenzonitrile, it is essential to follow strict safety protocols.
Storage: Store the product in a cool, dry place away from direct sunlight and sources of ignition. It should be kept in a tightly sealed container to prevent leakage and contamination.
Handling: Wear appropriate personal protective equipment (PPE), including chemical - resistant gloves, safety goggles, and a lab coat. Use the compound in a well - ventilated area, preferably under a fume hood to avoid inhalation of vapors.
Reaction Conditions: When using it in chemical reactions, carefully control the reaction conditions such as temperature, pressure, and reaction time according to the specific reaction requirements. Avoid mixing it with incompatible substances.
Case 1: Pharmaceutical Synthesis
A pharmaceutical company was aiming to develop a new anti - cancer drug. They used pentafluorobenzonitrile as an intermediate in a multi - step synthesis process. First, it was reacted with a specific amine compound under controlled temperature and catalyst conditions. This reaction formed a key intermediate that was further modified through a series of chemical reactions. After purification and testing, the final drug showed promising anti - cancer activity in pre - clinical studies. The high quality of the pentafluorobenzonitrile used ensured the reproducibility and efficiency of the synthesis process.
Case 2: Agrochemical Development
An agrochemical research team was working on a new type of insecticide. Pentafluorobenzonitrile was used as a building block to create a novel chemical structure. By combining it with other active ingredients and carefully formulating the product, they developed an insecticide with high efficacy against a wide range of crop - damaging insects. Field tests showed that the new insecticide significantly reduced insect infestations and increased crop yields.
Case 3: Polymer Synthesis
A materials research group was interested in developing a high - performance polymer for use in aerospace applications. They incorporated pentafluorobenzonitrile into a polymerization reaction. The resulting polymer had excellent thermal stability and mechanical strength. When tested in simulated aerospace environments, the polymer showed good resistance to high temperatures, pressure changes, and chemical exposure, making it a potential candidate for use in aircraft components.
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