2-Fluoro-4-methyl-3-nitropyridine: A Key Pharmaceutical Intermediate
Unlock advanced drug synthesis with a high-purity building block essential for API development.
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2-Fluoro-4-methyl-3-nitropyridine
As a critical component in the pharmaceutical industry, 2-Fluoro-4-methyl-3-nitropyridine (CAS: 19346-43-1) serves as a vital building block for the synthesis of complex Active Pharmaceutical Ingredients (APIs). Its unique molecular structure, featuring fluorine, methyl, and nitro groups, imparts specific reactivity that is invaluable in organic synthesis and drug discovery.
- Exploring 2-fluoro-4-methyl-3-nitropyridine pharmaceutical intermediate applications reveals its indispensable role in creating advanced therapeutic agents.
- Understanding the CAS 19346-43-1 chemical properties, such as its density of 1.358 g/cm³ and boiling point of 263.974°C, is crucial for efficient reaction planning.
- The compound is readily available for purchase online from reliable sources, facilitating its integration into research and production workflows.
- It is a key compound for synthesis of active pharmaceutical ingredients, enabling the development of new and improved medications.
Advantages
High Purity and Quality
Achieving ≥99.0% purity, this chemical ensures reliable and reproducible results in sensitive synthesis processes, a key factor for pharmaceutical intermediates manufacturing in China.
Versatile Reactivity
The strategic placement of functional groups makes it an excellent choice for various transformations, supporting its use as a crucial building block in organic synthesis.
Essential for Drug Discovery
Its role in creating novel APIs underscores its importance in accelerating drug discovery and development pipelines, making it a sought-after compound among researchers.
Key Applications
Pharmaceutical Synthesis
Used as a primary intermediate for manufacturing Active Pharmaceutical Ingredients (APIs), crucial for the synthesis of active pharmaceutical ingredients and meeting stringent quality standards.
Organic Chemistry Research
A valuable building block for chemists engaged in intricate organic synthesis, enabling the creation of complex molecular structures with tailored properties.
Fine Chemical Production
As a high-quality fluorinated fine chemical, it contributes to the development of specialized compounds used across various industries beyond pharmaceuticals.
Drug Development Pipelines
Its specific chemical structure and reactivity profile make it an indispensable component in early-stage drug development and lead optimization processes.
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