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1,1,1,3,4,4,4-Heptafluoro-3-(trifluoromethyl)butan-2-one, also known as HFTB, is a synthetic organic compound belonging to the class of fluorinated aliphatic compounds. It is a colorless liquid with a low boiling point of 59.6°C and a density of 1.9 g/cm3. HFTB has a wide range of applications in both industrial and sc...
1,1,1,3,4,4,4-Heptafluoro-3-(trifluoromethyl)butan-2-one, also known as HFTB, is a synthetic organic compound belonging to the class of fluorinated aliphatic compounds. It is a colorless liquid with a low boiling point of 59.6°C and a density of 1.9 g/cm3. HFTB has a wide range of applications in both industrial and scientific research. In particular, it is used as a solvent for chemical reactions, a reagent for the synthesis of organic compounds, and a surfactant for a variety of processes.
1,1,1,3,4,4,4-Heptafluoro-3-(trifluoromethyl)butan-2-one is utilized in the trifluoromethylation of α,β-unsaturated ketones. This process is crucial for producing trifluoromethylated compounds, which are significant in various organic syntheses. The use of rhodium catalysts and dimethyl zinc in this process highlights the compound's role in enhancing reaction mechanisms and facilitating waste disposal in organic synthesis (Sato et al., 2006) .
In the field of polymer science, 1,1,1,3,4,4,4-Heptafluoro-3-(trifluoromethyl)butan-2-one is involved in polycondensations of aliphatic dicarboxylic acids with aliphatic diols. This process is crucial for producing polyesters with high molecular weights, showcasing its significance in developing advanced polymeric materials (Buzin et al., 2008).
This compound also finds applications in studies related to physical properties like density, surface tension, and kinematic viscosity. Research on hydrofluoroethers, which include variants of this compound, is essential for understanding their behavior under different temperature conditions, which is crucial for applications in heat transfer and as solvents (Rausch et al., 2015).
In chemical engineering, 1,1,1,3,4,4,4-Heptafluoro-3-(trifluoromethyl)butan-2-one is important in the study of liquid-liquid equilibria, particularly involving butanediol, a key industrial chemical. Understanding these equilibria is critical for solvent selection and enhancing separation processes (Sharma et al., 1994).
This compound is used in synthesizing novel organic compounds like trifluoromethyl-substituted dielectrophiles and furan derivatives. These syntheses are important for developing new materials with unique properties and potential applications in various fields like pharmaceuticals and materials science (Flores et al., 2018).