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n-Butyllithium

Updated: 2026-07-15

Overview

n-Butyllithium (n-BuLi) is an organometallic compound primarily used as a reagent in industrial and laboratory settings. As a highly reactive alkyl lithium compound, it is typically supplied as a solution in hydrocarbons like hexane due to its pyrophoric nature. Industrial-grade n-BuLi is a critical catalyst in anionic polymerization processes and serves as a potent base for deprotonation reactions. Its reactivity makes it indispensable in the synthesis of elastomers (e.g., synthetic rubber) and fine chemicals. The compound requires specialized handling and storage to mitigate risks associated with its spontaneous flammability in air and violent reactions with water or protic solvents.

Physical and Chemical Properties

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n-Butyllithium solutions are colorless to slightly yellow, with concentrations typically ranging from 1.6M to 2.5M in non-polar solvents. The compound’s reactivity stems from the polarized carbon-lithium bond, which behaves as a carbanion source. It reacts explosively with water, alcohols, and acids, releasing flammable hydrocarbons. Thermal stability is limited; solutions decompose above 50°C. Density varies with solvent but generally ranges 0.68-0.75 g/cm³. Titration with diphenylacetic acid is a standard method for assaying active n-BuLi content, as impurities like lithium hydride may form during storage.

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Main Applications

In polymer production, n-BuLi initiates the anionic polymerization of dienes (e.g., butadiene) to create synthetic rubbers with tailored molecular weights. The pharmaceutical industry employs it for lithium-halogen exchange and directed metalation reactions to construct complex molecules. Additional uses include the synthesis of organolithium intermediates and as a strong base in deprotonations (pKa ~50). In specialty chemicals, it facilitates the preparation of lithium alkoxides and Grignard-type reagents. The electronics industry occasionally uses ultra-pure n-BuLi for lithium doping processes.

Safety and Storage

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n-BuLi demands rigorous safety protocols: store under inert gas (argon preferred) in sealed, flameproof cabinets at 2-8°C. Use explosion-proof refrigerators for long-term storage. Containers must be clearly labeled with pyrophoric hazard symbols (GHS02, GHS05). Handling requires Schlenk lines or glove boxes to exclude air/moisture. Spills should be smothered with dry sand or specialized Class D extinguishers—never use water or CO₂. Personnel must wear flame-resistant lab coats, face shields, and nitrile gloves. Facilities need hydrogen detectors due to potential gas evolution.

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B2B Procurement Guide

Industrial buyers should prioritize suppliers with ISO 9001 certification for hazardous chemicals. Key specifications include concentration (molarity), solvent type, and assay purity (typically 95-99%). Bulk shipments (>100kg) often use stainless steel cylinders with dual valves. Logistics must comply with UN 3394 (Class 4.2) regulations for organometallics. Request COA (Certificate of Analysis) for each batch, checking residual butane and lithium hydride levels. For cost efficiency, consider regional producers to minimize transit risks. Some suppliers offer just-in-time delivery to reduce on-site storage needs.

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