Exploring the Chemical Properties and Applications of 2-Methoxy-3-nitropyridine
2-Methoxy-3-nitropyridine is a compound that has garnered significant attention in the chemical industry due to its versatile nature and its crucial role as an intermediate in various synthetic processes. Understanding its chemical properties is key to unlocking its full potential in applications ranging from pharmaceutical development to the synthesis of fine chemicals. At NINGBO INNO PHARMCHEM CO.,LTD., we are dedicated to providing high-quality chemical synthesis intermediates, and 2-Methoxy-3-nitropyridine is a prime example of our commitment to excellence.
The compound, identified by CAS number 20265-35-4, presents as a white crystalline powder, a characteristic that speaks to its purity and suitability for sensitive reactions. Its molecular formula, C6H6N2O3, and molecular weight of 154.12300 hint at its specific structure and reactivity. Key physical properties include a melting point of 53-55°C and a boiling point of 247.9°C, along with a flash point of 103.8°C. These parameters are critical for chemists to consider when designing reaction conditions, ensuring safe handling and efficient processing. The compound's density is also noted at 1.3 g/cm³, providing further insight into its physical behavior.
The true value of 2-Methoxy-3-nitropyridine, however, lies in its chemical reactivity, making it a sought-after intermediate for chemical synthesis. The presence of both a methoxy group (-OCH3) and a nitro group (-NO2) attached to the pyridine ring provides multiple sites for functionalization. The nitro group, in particular, is a highly reactive functional group that can be readily reduced to an amino group. This transformation is fundamental in many synthetic pathways, allowing for the introduction of new substituents and the construction of more complex molecular architectures. Such versatility makes it an indispensable component in the synthesis of pharmaceuticals, where precise molecular engineering is required to achieve desired therapeutic effects. For example, many active pharmaceutical ingredients (APIs) contain nitrogen-heterocyclic rings, and intermediates like this pyridine derivative are essential for their assembly.
In the agrochemical sector, 2-Methoxy-3-nitropyridine contributes to the development of new and improved crop protection agents. The ability to manipulate its structure allows for the creation of compounds with targeted biological activity, whether for pest control, weed management, or disease prevention in plants. The fine chemical industry also benefits greatly from its utility, employing it in the synthesis of dyes, pigments, and other specialty chemicals where specific chemical properties are desired. As a manufacturer and supplier based in China, NINGBO INNO PHARMCHEM CO.,LTD. ensures that our 2-Methoxy-3-nitropyridine is produced to exacting standards, typically with an assay purity of ≥98.0%. This high level of purity is crucial for minimizing side reactions and maximizing yields in downstream processes.
We understand the critical importance of reliable chemical intermediates for your research and production needs. By offering 2-Methoxy-3-nitropyridine, we aim to empower chemists and researchers with a high-quality building block that facilitates innovation. Our commitment extends to providing comprehensive support, including detailed product specifications and flexible packaging options. When you choose NINGBO INNO PHARMCHEM CO.,LTD. as your supplier, you gain access to a trusted source of essential chemical synthesis intermediates that are vital for the advancement of scientific discovery and industrial application. Explore the potential of this remarkable compound for your next project.
Perspectives & Insights
Nano Explorer 01
“These parameters are critical for chemists to consider when designing reaction conditions, ensuring safe handling and efficient processing.”
Data Catalyst One
“The true value of 2-Methoxy-3-nitropyridine, however, lies in its chemical reactivity, making it a sought-after intermediate for chemical synthesis.”
Chem Thinker Labs
“The presence of both a methoxy group (-OCH3) and a nitro group (-NO2) attached to the pyridine ring provides multiple sites for functionalization.”