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2-Chloropyridine

Updated: 2026-07-15

Overview

2-Chloropyridine is a chlorinated derivative of pyridine, widely used as a building block in organic synthesis. Its reactive chlorine atom makes it valuable for nucleophilic substitution reactions, particularly in pharmaceutical and agrochemical manufacturing. The compound is commercially available in liquid form with high purity grades (≥98%) for industrial applications. First synthesized in the early 20th century, 2-chloropyridine has become a key intermediate for producing antihistamines, insecticides, and corrosion inhibitors. Its production typically involves chlorination of pyridine using phosphorus oxychloride (POCl₃) or other chlorinating agents under controlled conditions.

Physical and Chemical Properties

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As a heterocyclic aromatic compound, 2-chloropyridine exhibits characteristic stability and reactivity. Its density (1.205 g/cm³) and boiling point (166-167°C) make it suitable for distillation purification. The chlorine atom at the 2-position activates the ring for electrophilic substitution while maintaining resistance to hydrolysis under neutral conditions. The compound's solubility profile favors organic solvents like ethanol and ether, though it shows limited water solubility (approximately 5 g/L at 20°C). Its vapor pressure (2.5 mmHg at 20°C) necessitates careful handling to prevent inhalation exposure. Notably, 2-chloropyridine can form explosive mixtures with air at concentrations between 1.1-8.7% by volume.

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Main Applications

In pharmaceuticals, 2-chloropyridine serves as a precursor for drugs like chlorphenamine (antihistamine) and pyrithione (antifungal). Its molecular structure allows facile conversion to pyridine N-oxides or aminopyridines through nucleophilic displacement reactions. The agrochemical industry utilizes this compound in synthesizing neonicotinoid insecticides and herbicide intermediates. Approximately 30% of global production is allocated to crop protection chemicals. Other niche applications include specialty chemicals for metal surface treatment and polymer stabilizers where its chlorine functionality enables covalent bonding to substrates.

Safety and Storage

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Classified as harmful (Xi) under GHS, 2-chloropyridine requires strict handling protocols. Storage should be in corrosion-resistant containers (stainless steel or glass) with nitrogen blanketing to prevent moisture absorption and oxidation. Secondary containment is recommended due to its moderate aquatic toxicity (LC50 for fish: 10-100 mg/L). Personnel must use chemical-resistant gloves (nitrile or neoprene), goggles, and respiratory protection when handling. Spills should be absorbed with inert material (vermiculite) and disposed as hazardous waste. The compound's flash point (62°C) mandates storage away from ignition sources, with firefighting measures preferring alcohol-resistant foam over water jets.

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B2B Procurement Guide

Industrial buyers should prioritize suppliers with ISO 9001 certification and batch-specific Certificates of Analysis (CoA). Key quality parameters include purity (HPLC ≥98%), water content (<0.5%), and absence of heavy metal contaminants. Bulk shipments typically use 200kg steel drums or isotanks for quantities exceeding 1 metric ton. Price negotiations should consider long-term contracts with quarterly delivery schedules to mitigate market volatility. Technical support for regulatory compliance (REACH, TSCA) and custom synthesis options add value for pharmaceutical-grade procurement. Always audit supplier EHS (Environment, Health, Safety) practices, particularly waste treatment systems for chlorinated byproducts.

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