Exploring the Properties and Applications of 4,4,4-Trifluorobutyric Acid
For chemists and material scientists, understanding the detailed properties and potential applications of chemical intermediates is fundamental to driving innovation. 4,4,4-Trifluorobutyric Acid (CAS 406-93-9) is a prime example of such a versatile compound, offering a unique combination of a carboxylic acid functional group and a trifluoromethyl moiety. This article aims to provide an overview of its key properties and highlight its broad applicability across various scientific and industrial fields, catering to those looking to buy 4,4,4-trifluorobutyric acid.
Physically, 4,4,4-Trifluorobutyric Acid is typically described as a colorless solid. Its melting point range is generally between 25-32°C, meaning it can exist as a low-melting solid or a viscous liquid at room temperature. It boasts a boiling point of approximately 166-167°C and is readily soluble in water. The presence of the highly electronegative fluorine atoms in the trifluoromethyl group significantly influences the acid's properties, including its acidity (pKa ~4.16), making it a stronger acid than its non-fluorinated counterpart, butyric acid.
As a chemical supplier, we emphasize the importance of purity when discussing the properties of such intermediates. Our 4,4,4-Trifluorobutyric Acid is offered with high purity levels, typically 97-98% by GC, which is critical for ensuring successful and reproducible synthetic outcomes. This reliability is what makes it a preferred choice for researchers and manufacturers globally.
The trifluoromethyl group (-CF3) is known to enhance lipophilicity and metabolic stability in organic molecules. Consequently, 4,4,4-Trifluorobutyric Acid serves as an excellent precursor in the synthesis of pharmaceuticals, where these properties can lead to improved drug efficacy and pharmacokinetic profiles. In agrochemical development, it contributes to more potent and persistent active ingredients. Furthermore, its utility extends to the creation of specialty polymers, fluorinated surfactants, and various organic fine chemicals, showcasing its broad spectrum of applications.
For professionals seeking to integrate this compound into their workflows, understanding its safety profile is also important. Material Safety Data Sheets (MSDS) are available from reputable suppliers, detailing handling precautions, storage recommendations (typically 2-8°C), and appropriate personal protective equipment. As a responsible manufacturer in China, we ensure that all necessary safety and technical documentation accompanies our products.
In summary, the unique physical and chemical properties of 4,4,4-Trifluorobutyric Acid make it an indispensable intermediate for advanced chemical synthesis. Whether you are involved in pharmaceutical research, agrochemical innovation, or the development of novel specialty materials, this compound offers significant advantages. By choosing a trusted supplier that guarantees purity and provides comprehensive technical support, you can effectively leverage the power of fluorination in your projects.
Perspectives & Insights
Future Origin 2025
“Consequently, 4,4,4-Trifluorobutyric Acid serves as an excellent precursor in the synthesis of pharmaceuticals, where these properties can lead to improved drug efficacy and pharmacokinetic profiles.”
Core Analyst 01
“In agrochemical development, it contributes to more potent and persistent active ingredients.”
Silicon Seeker One
“Furthermore, its utility extends to the creation of specialty polymers, fluorinated surfactants, and various organic fine chemicals, showcasing its broad spectrum of applications.”