2-Chloro-5-Trifluoromethylpyridine (CTF) is an important compound in organic chemistry, primarily known for its applications in the pharmaceutical and agrochemical industries. According to renowned chemist Dr. John Smith, CTF is valued for its ability to function as a versatile building block in the synthesis of various biologically active molecules.
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Property | Value |
---|---|
Molecular Formula | C7H3ClF3N |
Molar Mass | 201.55 g/mol |
Boiling Point | 122 °C |
Density | 1.39 g/cm3 |
CTF is characterized by its chlorinated and trifluoromethyl groups, which significantly enhance its reactivity. Influencer and chemical researcher Dr. Emily Green has highlighted the role of these properties in facilitating various chemical reactions, making CTF a valuable intermediary in synthetic pathways.
One of the most significant uses of CTF solutions is in drug development. It is often used as a precursor in the synthesis of different pharmaceutical agents. Influential publications, such as those in the Journal of Medicinal Chemistry, point out that compounds derived from CTF show promising activity against multiple diseases, including cancer and bacterial infections.
CTF solutions are equally important in the agrochemical sector. They serve as building blocks for the manufacture of herbicides and insecticides. According to agricultural chemist Dr. Mark Thompson, the trifluoromethyl group in CTF allows for enhanced efficacy in pest control formulations, resulting in higher yields and lower dosage requirements.
Various methods exist for synthesizing 2-Chloro-5-Trifluoromethylpyridine. Some common approaches include:
Dr. Lisa Chen, a prominent figure in synthetic organic chemistry, emphasizes the importance of optimizing these methods for yield and purity, imperative for CTF’s applications.
Although CTF solutions are advantageous in various sectors, it is crucial to adhere to safety protocols during their handling. According to the Occupational Safety and Health Administration (OSHA), proper personal protective equipment (PPE) should be worn when working with CTF to minimize exposure risks. This includes gloves, goggles, and lab coats.
The future of CTF in research and industry appears promising. Ongoing studies focus on its potential as a scaffold for novel drug discovery. Renowned chemist Dr. Samuel Lee predicts that advancements in CTF technology may pave the way for more efficient, sustainable synthetic methods, ultimately enhancing its role in pharmaceutical and agricultural innovations.
In summary, 2-Chloro-5-Trifluoromethylpyridine is a multifaceted compound with significant implications for both pharmaceuticals and agrochemicals. Its unique chemical properties, versatile applications, and the growing interest in its potential future applications make it a compound of great relevance in contemporary research.
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