Overview
2-Bromophenyl is a brominated aromatic compound where a bromine atom is substituted at the ortho position of a benzene ring. It serves as a versatile building block in organic synthesis due to its reactivity in cross-coupling reactions (e.g., Suzuki, Heck reactions). The compound is synthesized via bromination of benzene derivatives or through diazonium salt reactions. In industrial contexts, 2-bromophenyl is valued for its role in producing active pharmaceutical ingredients (APIs) and agrochemicals. Its stability under standard conditions and predictable reactivity make it a preferred intermediate for specialty chemical manufacturers.
Physical and Chemical Properties
As a liquid at room temperature, 2-bromophenyl has a characteristic aromatic odor and a density higher than water. Its bromine substituent enhances electrophilic substitution reactivity, particularly at the meta position relative to the bromine. The compound’s insolubility in water necessitates organic solvents for reactions or formulations. Key chemical behaviors include participation in nucleophilic substitutions and metal-catalyzed couplings. Its boiling point (155–156°C) allows for easy purification via distillation. The bromine atom also confers UV absorbance, useful in analytical detection methods like HPLC.
Main Applications
2-Bromophenyl is predominantly used in pharmaceuticals to construct complex molecules, such as nonsteroidal anti-inflammatory drugs (NSAIDs) and antiviral agents. In agrochemicals, it acts as a precursor for herbicides and fungicides, leveraging its halogenated structure for bioactivity. Additional uses include dye synthesis, where it contributes to chromophore development, and material science for creating brominated flame retardants. Its role in palladium-catalyzed cross-couplings is critical for producing conjugated polymers in electronics.
Safety and Storage
Due to its toxicity and potential for skin/eye irritation, 2-bromophenyl requires handling in fume hoods with appropriate PPE. It is classified as harmful if ingested or inhaled, and prolonged exposure may affect the central nervous system. Storage recommendations include tight-seal containers under inert gas (e.g., nitrogen) to prevent oxidation. Incompatible with strong oxidizers and bases, it should be kept away from heat sources to avoid decomposition into hazardous fumes (bromine, hydrogen bromide).
B2B Procurement Guide
Bulk buyers should prioritize suppliers with documented quality control (e.g., GC/MS analysis, batch-specific COAs). Purity requirements vary by application; pharmaceutical-grade typically demands ≥99% purity, while industrial uses may tolerate ≥95%. Logistics considerations include DOT/IATA regulations for hazardous liquids. Negotiate INCOTERMS (e.g., FOB, CIF) based on shipment volume. For long-term contracts, price volatility of bromine (a raw material) may warrant fixed-price agreements.
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