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Calcium borohydride

Updated: 2026-07-29

Overview

Calcium borohydride is a specialized inorganic compound primarily valued for its strong reducing properties and potential in hydrogen storage systems. It belongs to the family of complex metal hydrides and is less common than sodium or lithium borohydride due to its higher reactivity and handling challenges. First synthesized in the mid-20th century, its industrial use grew with advancements in handling air-sensitive materials. Unlike simpler borohydrides, Ca(BH4)2 offers higher hydrogen content by weight (11.5%), making it theoretically attractive for energy applications, though practical adoption remains limited by stability issues.

Physical and Chemical Properties

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As a crystalline solid, calcium borohydride exhibits high reactivity with protic solvents like water or alcohols, releasing hydrogen gas exothermically. Its thermal decomposition begins around 300°C, yielding calcium hydride and boron-containing byproducts. The compound’s reducing power exceeds that of NaBH4, capable of converting esters to alcohols and cleaving certain C-O bonds. However, this reactivity necessitates strict moisture exclusion during use. Spectroscopic studies reveal a polymeric structure in solid state, with bridging BH4 groups contributing to its stability under inert conditions.

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Main Applications

In organic chemistry, calcium borohydride serves as a niche reducing agent for challenging transformations where milder reagents fail. It’s particularly effective for reducing sterically hindered ketones or converting nitriles to primary amines. Materials science researchers explore its hydrogen storage potential, though cycling stability remains a hurdle. Other specialized uses include pyrotechnic formulations (green flares) and as a precursor for boron-containing thin films in semiconductor manufacturing. Industrial adoption is limited to small-scale batch processes due to handling complexities.

Safety and Storage

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Handling Ca(BH4)2 requires rigorous safety protocols due to its pyrophoric nature and water reactivity. Work must occur in glove boxes or under continuous inert gas flow, using flame-resistant tools. Storage mandates airtight containers with moisture scavengers, typically at room temperature in argon environments. Spills require smothering with dry sand or specialized Class D fire extinguishers—never water. Personnel need flame-resistant clothing, face shields, and emergency hydrogen detectors. Transportation follows UN 3131 (Water-reactive solid, flammable) regulations with hazardous materials certification.

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B2B Procurement Guide

When sourcing calcium borohydride, prioritize suppliers specializing in air-sensitive compounds. Key specifications include ≥95% purity (verified by titration), low metallic impurities (<50 ppm), and moisture content below 0.1%. Packaging should be sealed ampoules or nitrogen-purged drums with oxygen indicators. Lead times often exceed standard chemicals due to custom packaging needs. Consider regional stockists for faster delivery, but validate their storage conditions. For R&D quantities (≤1kg), expect premiums of 30-50% over bulk pricing. Always request Material Safety Data Sheets (MSDS) with updated hazard classifications.

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