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| Classification | Pharmaceutical intermediate >> Heterocyclic compound intermediate >> Pyridine compound >> Nitropyridine |
|---|---|
| Name | 2-Methyl-3-nitropyridine |
| Molecular Structure | ![]() |
| Molecular Formula | C6H6N2O2 |
| Molecular Weight | 138.12 |
| CAS Registry Number | 18699-87-1 |
| EC Number | 805-108-9 |
| SMILES | CC1=C(C=CC=N1)[N+](=O)[O-] |
| Hazard Symbols |
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| Hazard Statements | H302+H332-H302-H315-H319-H332-H335 Details | ||||||||||||||||||||||||||||
| Precautionary Statements | P261-P264-P264+P265-P270-P271-P280-P301+P317-P302+P352-P304+P340-P305+P351+P338-P317-P319-P321-P330-P332+P317-P337+P317-P362+P364-P403+P233-P405-P501 Details | ||||||||||||||||||||||||||||
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| SDS | Available | ||||||||||||||||||||||||||||
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2-Methyl-3-nitropyridine, a derivative of pyridine, was first synthesized in the early 20th century during investigations into the reactivity and functionalization of pyridine compounds. The synthesis typically involves the nitration of 2-methylpyridine, resulting in the introduction of a nitro group at the 3-position of the pyridine ring. The discovery of 2-Methyl-3-nitropyridine laid the foundation for further exploration of its chemical properties and potential applications in various industries. 2-Methyl-3-nitropyridine serves as a valuable intermediate in the synthesis of pharmaceutical compounds. Its unique structure and reactivity make it a versatile building block for the production of various drugs, including antihypertensives, antivirals, and anti-inflammatory agents. Chemical modifications of the nitro group or the pyridine ring enable the creation of drug candidates with improved efficacy, bioavailability, or selectivity. In the agricultural sector, 2-Methyl-3-nitropyridine finds application as a precursor for the synthesis of agrochemicals and pesticides. Pyridine derivatives possess pesticidal properties, and modifications of their structure can enhance their effectiveness against pests and weeds. By incorporating 2-Methyl-3-nitropyridine into pesticide formulations, researchers aim to develop products that can protect crops from damage caused by insects, fungi, and other pathogens. 2-Methyl-3-nitropyridine is valuable as an intermediate in organic synthesis, facilitating the production of various chemical compounds with diverse applications. Its incorporation into multistep synthesis pathways enables the creation of complex molecules used in pharmaceuticals, agrochemicals, and materials science. Researchers exploit its reactivity and versatility to design efficient synthetic routes for producing target molecules. In laboratory settings, 2-Methyl-3-nitropyridine serves as a solvent or reagent in chemical reactions and synthesis processes. Its solubility properties and compatibility with a wide range of organic and inorganic compounds make it useful for dissolving or reacting with other substances to form desired products. Beyond its established applications, ongoing research explores new uses for 2-Methyl-3-nitropyridine in fields such as material science, catalysis, and drug discovery. Scientists investigate its reactivity, properties, and potential interactions with other molecules to develop innovative materials, catalysts, and chemical processes. References 2016. From (3-Nitropyridin-2-yl)pyruvates (Reissert Synthesis). Science of Synthesis. URL: https://science-of-synthesis.thieme.com/app/text/?id=SD-110-00755 2016. From Nitropyridyl Enamines (Leimgruber-Batcho Synthesis). Science of Synthesis. URL: https://science-of-synthesis.thieme.com/app/text/?id=SD-110-00769 2011. Nitropyridines 11. *Recyclization of quaternary nitropyridinium salts into substituted nitroanilines. Chemistry of Heterocyclic Compounds. DOI: 10.1007/s10593-011-0783-3 |
| Market Analysis Reports |
| List of Reports Available for 2-Methyl-3-nitropyridine |