The Pivotal Role of 2-Fluoro-5-methyl-3-nitropyridine in Modern Pharmaceutical Synthesis
In the dynamic landscape of pharmaceutical research and development, the availability of high-quality chemical intermediates is paramount. Among these crucial compounds, 2-Fluoro-5-methyl-3-nitropyridine (CAS: 19346-44-2) has emerged as a significant player. This pyridine derivative, characterized by its unique molecular structure and excellent purity levels, is indispensable for the synthesis of a wide array of Active Pharmaceutical Ingredients (APIs). This article delves into the properties of 2-Fluoro-5-methyl-3-nitropyridine, its critical applications in drug manufacturing, and the advantages of procuring this vital chemical from established manufacturers and suppliers in China.
The chemical properties of 2-Fluoro-5-methyl-3-nitropyridine make it a highly versatile building block for organic chemists. Possessing a molecular formula of C6H5FN2O2 and a molecular weight of 156.11500, its structure incorporates a fluorine atom, a methyl group, and a nitro group attached to a pyridine ring. This arrangement enhances its reactivity, allowing for efficient participation in various synthetic pathways. The compound typically presents as a white crystalline powder, with a density of 1.357 g/cm³ and a boiling point of 276.2ºC at 760 mmHg. Its stability under controlled storage conditions, usually in a tightly closed container in a cool, dry environment, is crucial for maintaining its integrity as a high-purity pharmaceutical intermediate.
The primary application of 2-Fluoro-5-methyl-3-nitropyridine lies in its role as a pharmaceutical intermediate. It serves as a key precursor in the synthesis of APIs that target a broad spectrum of therapeutic areas, including but not limited to anti-inflammatory, antibacterial, and antiviral medications. The strategic placement of functional groups on the pyridine ring allows for facile modification, enabling chemists to tailor the molecule for specific pharmacological activities. For instance, the nitro group can be readily reduced to an amine, opening up diverse derivatization possibilities, while the fluorine atom can influence lipophilicity and metabolic stability, thereby improving the bioavailability of the final drug product. This makes it a highly sought-after chemical for companies engaged in advanced drug discovery and development.
The demand for high-purity intermediates like 2-Fluoro-5-methyl-3-nitropyridine has led to increased focus on reliable sourcing. China has established itself as a global hub for the production of fine chemicals and pharmaceutical intermediates, offering competitive pricing and scalable manufacturing capabilities. Manufacturers and suppliers in China are equipped with advanced technologies and adhere to stringent quality control measures, often achieving purity levels of ≥99.0% for this compound. For pharmaceutical companies, partnering with a reputable 2-Fluoro-5-methyl-3-nitropyridine manufacturer in China ensures a consistent supply of quality material, which is vital for regulatory compliance and product efficacy. When considering purchase of this compound, it is advisable to look for suppliers who provide detailed product specifications and certifications.
In conclusion, 2-Fluoro-5-methyl-3-nitropyridine is a cornerstone chemical for modern pharmaceutical synthesis. Its unique properties and versatility make it an indispensable intermediate for creating life-saving and life-enhancing medications. As the pharmaceutical industry continues to evolve, the importance of such advanced chemical building blocks will only grow. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to providing high-quality pharmaceutical intermediates, including 2-Fluoro-5-methyl-3-nitropyridine, to support global pharmaceutical innovation. We offer comprehensive support for your chemical needs, from custom synthesis to bulk supply, ensuring you have the materials required for success.
Perspectives & Insights
Quantum Pioneer 24
“For instance, the nitro group can be readily reduced to an amine, opening up diverse derivatization possibilities, while the fluorine atom can influence lipophilicity and metabolic stability, thereby improving the bioavailability of the final drug product.”
Bio Explorer X
“This makes it a highly sought-after chemical for companies engaged in advanced drug discovery and development.”
Nano Catalyst AI
“The demand for high-purity intermediates like 2-Fluoro-5-methyl-3-nitropyridine has led to increased focus on reliable sourcing.”