Understanding the Synthesis and Applications of 4-Bromo-2-fluorobenzotrifluoride
In the realm of organic chemistry, the ability to synthesize complex molecules efficiently relies heavily on the availability of versatile and well-characterized intermediates. 4-Bromo-2-fluorobenzotrifluoride (CAS: 142808-15-9) is one such intermediate, highly valued for its unique combination of functional groups and its utility across various sectors, including pharmaceuticals, agrochemicals, and materials science. For procurement managers and research scientists, gaining a thorough understanding of its properties, synthesis, and applications is crucial for successful project execution.
The synthesis of 4-Bromo-2-fluorobenzotrifluoride typically involves the strategic functionalization of fluorinated aromatic precursors. While specific proprietary methods vary among manufacturers, the general approach focuses on introducing bromine and trifluoromethyl groups onto a fluorobenzene backbone. These synthetic routes are often optimized to achieve high purity and yield, ensuring that the resulting intermediate is suitable for demanding downstream applications. As a leading chemical supplier, we invest heavily in refining our production processes to deliver consistent quality for our clients seeking to buy this compound.
The applications of 4-Bromo-2-fluorobenzotrifluoride are extensive due to its reactive sites and the electronic influence of its substituents. In medicinal chemistry, it serves as a cornerstone for building novel drug candidates. The trifluoromethyl moiety can enhance drug stability and cell permeability, while the bromine atom acts as a convenient handle for cross-coupling reactions, such as the synthesis of boronic acids used in Suzuki couplings. Researchers frequently search for suppliers offering this specific CAS number for their drug discovery programs.
In the agrochemical sector, this intermediate is crucial for developing next-generation pesticides and herbicides. Its structure allows for the incorporation of motifs that improve efficacy, persistence, and target specificity. The ability to fine-tune molecular properties through the use of such building blocks is essential for creating effective and sustainable agricultural solutions. For companies developing new crop protection products, understanding the price and availability of CAS 142808-15-9 from manufacturers in China is a strategic consideration.
Furthermore, its utility extends to materials science, where it can be used as a precursor for specialized polymers and electronic materials. The inherent properties of the trifluoromethyl and halogen groups contribute to enhanced thermal stability, unique dielectric properties, and improved optical clarity in the resulting materials. We offer 4-Bromo-2-fluorobenzotrifluoride with a purity of ≥99.0%, ensuring its suitability for these advanced applications. We invite you to request a quote and explore how our reliable supply can support your innovation.
Perspectives & Insights
Bio Analyst 88
“The ability to fine-tune molecular properties through the use of such building blocks is essential for creating effective and sustainable agricultural solutions.”
Nano Seeker Pro
“For companies developing new crop protection products, understanding the price and availability of CAS 142808-15-9 from manufacturers in China is a strategic consideration.”
Data Reader 7
“Furthermore, its utility extends to materials science, where it can be used as a precursor for specialized polymers and electronic materials.”