Overview
Dicyclohexylborane is an organoboron compound with the formula (C6H11)2BH. It is a versatile reagent in organic synthesis, particularly valued for its role as a reducing agent and in hydroboration reactions. Developed as a more stable alternative to diborane (B2H6), it offers selective reactivity with alkenes, alkynes, and carbonyl compounds. The compound is typically handled as a solution in tetrahydrofuran (THF) or hexane due to its sensitivity to air and moisture. Its industrial use spans pharmaceuticals, agrochemicals, and specialty chemicals, where precise reduction or functionalization of organic molecules is required.
Physical and Chemical Properties
Dicyclohexylborane is a colorless to pale yellow liquid at room temperature, with a density of 0.89 g/cm³. It is highly soluble in common organic solvents like THF and hexane but reacts violently with water, alcohols, and oxygen. The compound decomposes upon heating, releasing flammable hydrogen gas. Key chemical properties include its strong reducing capability and selectivity in hydroboration, where it adds across carbon-carbon double or triple bonds to form organoborane intermediates. These intermediates are pivotal in subsequent transformations, such as oxidation to alcohols or cross-coupling reactions.
Main Applications
In organic synthesis, dicyclohexylborane is primarily used for the reduction of carbonyl compounds (e.g., ketones to alcohols) and hydroboration of unsaturated bonds. It is favored over other boranes for its selectivity and milder reaction conditions. The pharmaceutical industry employs it in the synthesis of chiral intermediates, while agrochemical manufacturers use it to produce herbicides and insecticides. Additionally, it serves as a catalyst or co-reagent in polymerization processes and materials science applications.
Safety and Storage
Dicyclohexylborane poses significant hazards: it is flammable, moisture-sensitive, and reacts explosively with air. Proper storage requires inert gas (argon/nitrogen) atmospheres and refrigeration (2-8°C). Containers must be sealed with PTFE-lined caps to prevent air ingress. Handling demands strict precautions: use gloves, goggles, and fume hoods. Spills should be quenched with careful alcohol addition under inert gas. Disposal must follow local regulations for reactive boron compounds.
B2B Procurement Guide
Industrial buyers should prioritize suppliers offering certificates of analysis (COA) with purity ≥95% and moisture content <0.5%. Packaging in septum-sealed bottles under inert gas is essential to maintain stability. Bulk purchases (kilograms) may reduce costs by 20-30%. Verify supplier reliability through third-party audits or industry references. Consider regional logistics to minimize transit time and exposure to temperature fluctuations.
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