3-Chloro-5-fluorophenol: A Key Intermediate in Modern Chemical Synthesis
Unlock advanced pharmaceutical and organic synthesis with this vital fluorinated phenol intermediate.
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3-Chloro-5-fluorophenol
This compound serves as a crucial building block in complex organic synthesis, notably in the development of novel pharmaceutical agents. Its specific structure allows for targeted modifications, making it invaluable for creating substituted amides that act as antagonists or inverse agonists for cannabinoid-1 receptors and heteroarylcarboxamide antagonists for the PGE2 receptor EP4. These applications are particularly relevant in the research and treatment of pain, inflammation, osteoarthritis, and rheumatoid arthritis.
- Discover the role of 3-Chloro-5-fluorophenol uses in creating advanced pharmaceutical intermediates for targeted therapies.
- Explore the detailed 3-Chloro-5-fluorophenol synthesis pathways to understand its efficient production.
- Learn how CAS 202982-70-5 acts as a vital intermediate in the development of cannabinoid-1 receptor modulators.
- Understand its significance as a precursor for PGE2 receptor EP4 antagonists in therapeutic research.
Key Advantages
Versatile Intermediate
Leverage its utility as a key component in complex organic synthesis, facilitating the creation of diverse chemical structures with potential therapeutic benefits.
Targeted Pharmaceutical Applications
Its specific chemical properties make it ideal for designing receptor antagonists, contributing to advancements in pain and inflammation treatment research.
High Purity and Reliable Synthesis
Benefit from a well-defined synthesis process that ensures high purity, crucial for consistent results in demanding research and development projects.
Key Applications
Pharmaceutical Synthesis
As a 3-Chloro-5-fluorophenol uses intermediate, it is critical for synthesizing drug candidates targeting inflammatory conditions and pain.
Organic Chemistry
Its role as a fine chemical intermediate supports a wide range of organic synthesis projects requiring halogenated phenols.
Receptor Modulator Development
Essential for creating novel cannabinoid-1 and PGE2 receptor modulators, advancing research in this specialized area.
Research & Development
A fundamental building block for R&D labs focusing on novel compound discovery and development in medicinal chemistry.
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