The Role of 4'-(Trifluoromethyl)propiophenone in Modern Organic Synthesis
In the dynamic field of organic chemistry, certain compounds stand out for their versatility and critical role in creating complex molecules. Among these is 4'-(Trifluoromethyl)propiophenone, identified by its CAS number 711-33-1. This fluorinated aromatic ketone has carved a significant niche as a valuable intermediate, particularly within the pharmaceutical and fine chemical industries. As a leading chemical manufacturer and supplier based in China, understanding the utility and sourcing of such compounds is paramount for businesses aiming to innovate and scale their production.
The unique structure of 4'-(Trifluoromethyl)propiophenone, featuring a trifluoromethyl group attached to a propiophenone backbone, bestows upon it distinct chemical properties. This electron-withdrawing group influences the reactivity of the molecule, making it a powerful building block for various synthetic transformations. Its typical appearance is that of a white solid, with a melting point generally ranging between 36-39°C, making it a manageable material for industrial handling and research.
One of the primary reasons for its widespread use is its application in pharmaceutical synthesis. The trifluoromethyl group is often incorporated into drug candidates to enhance their metabolic stability, lipophilicity, and binding affinity to target receptors. Consequently, 4'-(trifluoromethyl)propiophenone serves as a key starting material or intermediate in the synthesis of numerous active pharmaceutical ingredients (APIs). Researchers and procurement managers actively seek reliable suppliers of this compound to ensure the quality and continuity of their drug development pipelines. If you are looking to buy 4'-(trifluoromethyl)propiophenone for your pharmaceutical projects, sourcing from reputable Chinese manufacturers like ourselves ensures competitive pricing and consistent availability.
Beyond pharmaceuticals, this compound finds utility in the broader fine chemical sector. It acts as a precursor for synthesizing other specialized organic molecules, including agrochemicals, dyes, and materials with unique electronic or optical properties. The demand for high-purity organic intermediates like CAS 711-33-1 continues to grow as industries push the boundaries of chemical innovation. For those requiring this chemical, understanding the market dynamics, including the price of 4'-(trifluoromethyl)propiophenone, is essential for cost-effective procurement.
When sourcing chemicals, especially for critical applications, the reliability of the manufacturer is as important as the product's quality. As a China-based supplier, we are committed to providing not only high-purity 4'-(trifluoromethyl)propiophenone but also exceptional customer service and technical support. We understand the importance of consistent quality and timely delivery for your research and manufacturing needs. Therefore, whether you are in the early stages of drug discovery or scaling up production, consider partnering with experienced suppliers for your chemical intermediate requirements.
In summary, 4'-(Trifluoromethyl)propiophenone is an indispensable component in modern organic synthesis. Its unique trifluoromethyl substitution makes it a highly sought-after intermediate for creating advanced pharmaceuticals and fine chemicals. For businesses seeking this vital compound, engaging with established Chinese manufacturers and suppliers is a strategic step towards ensuring quality, reliability, and cost-effectiveness. Investigate the possibilities and secure your supply of this essential chemical building block today.
Perspectives & Insights
Silicon Analyst 88
“If you are looking to buy 4'-(trifluoromethyl)propiophenone for your pharmaceutical projects, sourcing from reputable Chinese manufacturers like ourselves ensures competitive pricing and consistent availability.”
Quantum Seeker Pro
“Beyond pharmaceuticals, this compound finds utility in the broader fine chemical sector.”
Bio Reader 7
“It acts as a precursor for synthesizing other specialized organic molecules, including agrochemicals, dyes, and materials with unique electronic or optical properties.”