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Carbides. --- Nitrides. --- Borides. --- Silicides.
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Borides --- Superconductors, Ternary --- Superconductors --- Magnetic properties --- Congresses
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Rare-earth hexaborides are a group of materials composed of octahedral boron units. They are useful for making advanced ceramics that have a wide range of industrial applications due to their low electronic work functions, hardness, refractory properties, low electrical resistances and specific thermal expansion coefficients. Rare-Earth Metal Hexaborides: Synthesis, Properties, and Applications provides a quick reference on rare-earth metal hexaborides and their engineering applications. It provides a primer on rare earth elements followed by details of rare-earth hexaboride structures, synthetic methods, and information about their alloys and ceramic composites. References to scholarly research are also provided for assisting advanced readers. This reference is a handy source of information for chemical engineering and materials science scholars, and anyone interested in the applied chemistry of rare-earth metals and borides.
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Borides --- Silicides --- Phosphides --- Borures. --- Siliciures. --- Phosphures.
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Carbides. --- Nitrides. --- Borides. --- Silicides. --- Metallurgy. --- Métallurgie. --- Siliciures. --- Borures. --- Nitrures. --- Carbures.
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Refractory materials --- Semiconductors --- Carbides --- Nitrides --- Borides --- Congresses. --- Materials --- Refractory materials - Congresses. --- Semiconductors - Materials - Congresses. --- Carbides - Congresses. --- Nitrides - Congresses. --- Borides - Congresses. --- Ceramics --- Semi-conductors(Symposium) --- Single crystals --- Diamond (Synthetic-)
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Lanthanum hexaboride is useful because it possesses a high melting point (2210C), a low work function, one of the highest known electron emissivities, and is stable in vacuum. This volume summarises the extant data on the properties of this material, including the: bulk modulus, conductivity, crystal structure, Debye temperature, defect structure, elastic constants, electronic structure, emissivity, Fermi surface, hardness, heat capacity, magnetoresistance, reflectivity, resistivity, specific heat, surface structure, thermal conductivity, thermoelectric power, toughness and work function. The
Lanthanum hexaboride. --- Lanthanum compounds. --- Transition metal compounds --- Lanthanum compounds --- Rare earth borides
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