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2-Chloro-4-methyl-3-nitropyridine

Updated: 2026-07-15

Overview

2-Chloro-4-methyl-3-nitropyridine is a specialized organic compound featuring both chloro and nitro substituents on a pyridine ring. Its molecular structure makes it a versatile intermediate in synthesizing pharmaceuticals, pesticides, and fine chemicals. The compound is typically produced through nitration and chlorination reactions of substituted pyridines. In industrial settings, it is valued for its reactivity, particularly in nucleophilic substitution and reduction reactions. Its applications span across drug development, where it contributes to the synthesis of active pharmaceutical ingredients (APIs), and agrochemical production, where it aids in creating crop protection agents.

Physical and Chemical Properties

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The compound appears as a pale yellow to brown crystalline powder with a molecular weight of 172.57 g/mol. It has a melting point of approximately 80-85°C, though exact values may vary based on purity. It demonstrates good solubility in polar organic solvents like ethanol and acetone but is poorly soluble in water. Key chemical properties include the reactivity of its nitro and chloro groups, which participate in various organic transformations. The nitro group can be reduced to an amine, while the chloro group is susceptible to nucleophilic displacement, enabling diverse derivatization. Stability under standard storage conditions makes it suitable for long-term use in controlled environments.

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Main Applications

2-Chloro-4-methyl-3-nitropyridine is predominantly used as a building block in pharmaceutical synthesis. It serves as an intermediate for antibiotics, antiviral drugs, and other therapeutic agents. For example, it may be incorporated into the structure of molecules targeting bacterial or viral infections. In agrochemicals, the compound is employed to develop herbicides and insecticides, leveraging its ability to modify biological activity. Additionally, it finds niche applications in academic and industrial research for exploring novel organic reactions and catalytic processes.

Safety and Storage

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Handling requires caution due to potential health hazards. The compound is harmful if swallowed, inhaled, or absorbed through the skin. Personal protective equipment (PPE) such as gloves, goggles, and lab coats is essential. Work areas should be well-ventilated to avoid fume accumulation. Storage recommendations include keeping the material in a cool, dry place, sealed in airtight containers to prevent moisture absorption or degradation. Incompatible with strong oxidizing agents, it should be isolated from reactive substances to prevent hazardous reactions.

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B2B Procurement Guide

Industrial buyers should prioritize suppliers with certifications like ISO or GMP, ensuring consistent quality. Key procurement criteria include purity (≥98% by HPLC/GC), batch-to-batch consistency, and scalability for bulk orders. Pricing varies by quantity, with discounts often available for multi-kilogram purchases. Logistics considerations include secure packaging to prevent contamination and compliance with transportation regulations for hazardous chemicals. Request safety data sheets (SDS) and technical support for large-scale applications to optimize usage.

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