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Carbon-coated gadolinium carbide nanocrystallites are generated by a process based on the Kratschmer-Huffman carbon-arc method of preparing fullerenes, and a novel magnetic-field-gradient separation technique is used to separate them. This separation of nanocrystalline byproducts of the carbon arc process is a prerequisite for many of the proposed applications of these materials. While the data presented pertain to Gd₂C₃, this method is generally applicable to any paramagnetic or ferromagnetic compound. Structural characterization by x-ray and electron diffraction and high-resolution transmission electron microscopy reveal the presence of a single gadolinium-containing (Gd₂C₃) phase and excess carbon. The carbide phase exists as 10--50 nm spherical particles. SQUID magnetometry shows paramagnetic response attributed to Gd^3+ ions.
Majetich et al. (Wed,) studied this question.