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High Purity Samarium

Updated: 2026-07-15

Overview

High purity samarium is a rare earth element belonging to the lanthanide series, valued for its exceptional magnetic and nuclear properties. It typically appears as a silvery-white metal that tarnishes slowly in air. The commercial material is usually produced through metallothermic reduction of samarium oxide or electrolysis of molten salts. Industrial-grade samarium typically has purity levels ranging from 99% to 99.9%, while ultra-high purity versions (99.99%+) are available for specialized applications. The metal plays crucial roles in modern technology sectors, particularly in permanent magnet production where samarium-cobalt alloys demonstrate superior performance at high temperatures.

Physical and Chemical Properties

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Samarium possesses a hexagonal close-packed crystal structure at room temperature, transforming to body-centered cubic above 734°C. The metal exhibits paramagnetic behavior but becomes ferromagnetic below 14.8K. Its electrical resistivity is relatively high compared to common metals, measuring about 94 μΩ·cm at room temperature. Chemically, samarium reacts slowly with cold water and more vigorously with hot water or steam. It dissolves readily in mineral acids, forming trivalent samarium salts. When exposed to air, a protective oxide layer forms, though powder forms are pyrophoric and require careful handling under inert atmospheres.

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Main Applications

The largest application of high purity samarium is in Sm-Co permanent magnets, which maintain their magnetic properties at temperatures up to 300°C, making them indispensable in aerospace, defense, and high-performance motor applications. These magnets also find use in microwave technology and precision instruments. In nuclear technology, samarium's neutron absorption properties make it valuable for control rods in nuclear reactors. The medical field utilizes samarium-153 isotopes for cancer treatment (Quadramet). Additionally, samarium serves as a dopant in optical materials, a catalyst in organic synthesis, and a component in specialty alloys for high-temperature applications.

Safety and Storage

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Samarium metal requires careful handling due to its pyrophoric nature in powder form. Bulk metal should be stored under argon or mineral oil to prevent oxidation. Work areas should have proper ventilation and fire suppression equipment suitable for metal fires (Class D extinguishers). Personnel handling samarium should wear appropriate PPE including gloves, safety goggles, and protective clothing. In case of fire, standard extinguishing methods may exacerbate the situation; instead, use dry sand or special Class D extinguishing agents. Spills should be collected carefully under inert atmosphere and properly disposed following local regulations for rare earth metals.

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B2B Procurement Guide

When sourcing high purity samarium, buyers should specify the required purity level (typically 99.9% or 99.99%), physical form (ingot, powder, or pieces), and packaging requirements. Reputable suppliers should provide material certificates with detailed impurity analysis, especially for critical applications like magnet production. Consider long-term supply agreements due to market volatility in rare earth metals. Verify the supplier's capability to provide consistent quality and their compliance with international trade regulations. For technical applications, request samples for verification testing before large-scale orders. Shipping typically requires hazardous materials classification for powdered forms.

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