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A universal trend of structural, mechanical and electronic properties in transition metal (M=V, Nb, and Ta) borides: First-principle calculations

โœ Scribed by Yao, Tiankai; Wang, Yachun; Li, Hui; Lian, Jie; Zhang, Jingwu; Gou, Huiyang


Book ID
119220290
Publisher
Elsevier Science
Year
2012
Tongue
English
Weight
783 KB
Volume
65
Category
Article
ISSN
0927-0256

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โœฆ Synopsis


First-principle total energy calculations are employed to provide a fundamental understanding of the structural, mechanical, and electronic properties of transition metal (M = V, Nb, and Ta) borides with different boron concentrations (M 2 B, M 3 B 2 , MB, M 5 B 6 , M 3 B 4 , M 2 B 3 , and MB 2 ). The results show that a universal trend in thermodynamic stability, elastic properties (bulk modulus and shear modulus) and electronic structure exists for V, Nb, and Ta borides. With the increase of boron concentrations, thermodynamic stability and bulk modulus of V, Nb, and Ta borides present an increasing trend, whereas shear modulus reaches the maximum at M 2 B 3 and then decreases to MB 2 . The variation of electronic structure and Mulliken overlap population explain the origin of the general changes of these borides and their superior mechanical properties. Also, due to the relatively higher mechanical properties, M 5 B 6 , M 3 B 4 , and M 2 B 3 are demonstrated to be possible candidates for superhard films.


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