Phase stability and elastic properties of XMgB14 studied by ab initio calculations (X=Al,Ge,Si,C,Mg,Sc,Ti,V,Zr,Nb,Ta,Hf)
نویسندگان
چکیده
The effect of valence electron concentration VEC and size of the X element in XMgB14 space group Imma X=Al, C, Si, Ge, Mg, Sc, Ti, V, Zr, Hf, Nb, Ta on stability and elastic properties was studied using ab initio calculations. Generally, icosahedral bonds, present in these compounds, are electron deficient. Based on the Bader charge analysis Bader, Atoms in Molecules: A Quantum Theory Oxford University Press, New York, 1990 and density of states, X elements and Mg are shown here to transfer electrons to the boron network. Hence, the stability of the compounds studied increases as more electrons are transferred. As the VEC of the X element increases, fewer electrons are transferred to the boron network, and therefore the phase stability decreases. The bulk moduli of all compounds are in the range from 205 to 220 GPa. This can be understood analyzing the cohesive energy thereof. As the bulk modulus increases, the cohesive energy decreases.
منابع مشابه
Interatomic potentials and atomistic calculations of some metal hydride systems
The effective interatomic pair potentials for Ti, Zr, Hf, V, Nb, Ta and their hydrides are obtained by inverting the ab initio cohesive energy curves based on the lattice inversion method, and then the inverted pair potentials are used to calculate the mechanical and thermal properties of these hydrides. 2002 Published by Elsevier Science B.V.
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