Structural determination and physical properties of 4d transitional metal diborides by first-principles calculations

Author:

Ying Chun1,Zhao Erjun1,Lin Lin1,Hou Qingyu1

Affiliation:

1. College of Science, Inner Mongolia University of Technology, Hohhot 010051, China

Abstract

The structural determination, thermodynamic, mechanical, dynamic and electronic properties of 4d transitional metal diborides MB 2 ( M = Y – Ag ) are systematically investigated by first-principles within the density functional theory (DFT). For each diboride, five structures are considered, i.e. AlB 2-, ReB 2-, OsB 2-, MoB 2- and WB 2-type structures. The calculated lattice parameters are in good agreement with the previously theoretical and experimental studies. The formation enthalpy increases from YB 2 to AgB 2 in AlB 2-type structure (similar to MoB 2- and WB 2-type). While the formation enthalpy decreases from YB 2 to MoB 2, reached minimum value to TcB 2, and then increases gradually in ReB 2-type structure (similar to OsB 2-type), which is consistent with the results of the calculated density of states. The structural stability of these materials relates mainly on electronegative of metals, boron structure and bond characters. Among the considered structures, TcB 2– ReB 2 ( TcB 2– ReB 2 represents TcB 2 in ReB 2-type structure, the same hereinafter) has the largest shear modulus (248 GPa), and is the hardest compound. The number of electrons transferred from metals to boron atoms and the calculated densities of states (DOS) indicate that each diboride is a complex mixture of metallic, ionic and covalent characteristics. Trends are discussed.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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