2-Methyl-4-heptafluoroisopropylaniline
CAS Number: 238098-26-5
Description
2-Methyl-4-heptafluoroisopropylaniline is a specialized fluorinated aromatic amine. This compound features a methyl group and a heptafluoroisopropyl substituent on the aniline backbone. The presence of the heptafluoroisopropyl group significantly influences its chemical properties, often imparting increased lipophilicity, metabolic stability, and unique electronic characteristics. It is typically encountered as a crystalline solid and serves as a crucial building block or intermediate in the synthesis of advanced pharmaceutical compounds, agrochemicals, and specialty materials. Its distinct structural features make it valuable for creating molecules with tailored biological activities or material properties.
Properties
Property Value Chemical Name 2-Methyl-4-heptafluoroisopropylaniline CAS Number 238098-26-5 Molecular Formula C10H8F7N Molecular Weight 275.17 g/mol Appearance White to off-white crystalline powder or solid Purity ≥98% (typical) Melting Point 55-60 °C (typical, may vary) Boiling Point Not readily available; likely decomposes or boils at high temperature Solubility Soluble in most organic solvents (e.g., dichloromethane, ethyl acetate, THF). Sparingly soluble in water. Stability Stable under recommended storage conditions (cool, dry, dark place) Usage
2-Methyl-4-heptafluoroisopropylaniline is primarily utilized as a key intermediate in organic synthesis. Its applications often involve the development of:
- Active Pharmaceutical Ingredients (APIs): It can be incorporated into the synthesis of novel drug candidates where the fluorinated moiety can enhance pharmacokinetic properties like bioavailability or metabolic stability.
- Agrochemicals: Used in the development of new pesticides, herbicides, or fungicides where the fluorine atoms can contribute to increased efficacy or altered environmental persistence.
- Specialty Chemicals & Materials: Employed in creating advanced polymers, dyes, or other materials where its unique electronic and physical properties are desired. For instance, it can be used to modify the properties of liquid crystals or organic light-emitting diodes (OLEDs).
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