Article ID Journal Published Year Pages File Type
1331330 Journal of Solid State Chemistry 2010 8 Pages PDF
Abstract

The structural properties, elastic properties, heats of formation, electronic structures, and densities of states of 20 intermetallic compounds in the Ca–X (X=Si, Ge, Sn, Pb) systems have been systematically investigated by using first-principle calculations. Our computational results indicated that with increasing atomic weight of X, the bulk modulus of Ca–X intermetallic compounds decreases gradually. It was also found that Ca36Sn23 and CaPb are mechanically unstable phases. Results on the electronic energy band and densities of states also indicated that Ca3Si4 is an indirect band gap semiconductor with a band gap of 0.598 eV, and Ca2Si, Ca2Ge, Ca2Sn, and Ca2Pb are direct band gap semiconductors with band gaps of 0.324, 0.265, 0.06, and 0.07 eV, respectively. In addition, it is found that the absolute values of heats of formation for all Ca–X intermetallics are larger than 30 kJ/mol atom.

Graphical abstractCalculated (a) bulk moduli and (b) shear moduli of Ca–X system intermetallic compounds.Figure optionsDownload full-size imageDownload as PowerPoint slide

Related Topics
Physical Sciences and Engineering Chemistry Inorganic Chemistry
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