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Theoretical investigations on the structural stability and miscibility in BAIN and BGaN alloys: bond-order interatomic potential calculations

机译:BAIN和BGaN合金的结构稳定性和混溶性的理论研究:键序原子间电势计算

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摘要

Structural stability and miscibility of BxAl1-xN and BxGa1-xN alloys including 3-fold coordinated hexagonal (Hex), 4-fold coordinated wurtzite (WZ) and zinc blende (ZB) structures are systematically investigated based on empirical bond-order potential (BOP), which incorporates electrostatic energies due to bond and ionic charges. We find that the Hex structure is stabilized for free-standing BxAl1-xN and BxGa1-xN alloys with boron composition x 0.9 while the ZB (WZ) structure is stabilized for 0.25 = x = 0.9 (x 0.25) both in BxAl1-xN and BxGa1-xN alloys due to the electrostatic energy. Furthermore, the miscibility of BxAl1-xN and BxGa1-xN alloys with 4-fold coordinated structures are found to be higher than that with Hex structure owing to the chemical energy contribution to the excess energy. These results suggest that our empirical interatomic potentials approach is feasible to clarify structural stability not only for the 3-fold coordinated Hex structure but also 4-fold coordinated WZ and ZB structures in BxAl1-xN and BxGa1-xN alloys. (C) 2019 The Japan Society of Applied Physics
机译:基于经验键序势(BOP)系统研究了BxAl1-xN和BxGa1-xN合金的结构稳定性和可混溶性,包括3倍配位的六边形(Hex),4倍配位的纤锌矿(WZ)和锌共混物(ZB)结构),由于键和离子电荷而吸收了静电能。我们发现Hex结构对于硼成分x> 0.9的自立式BxAl1-xN和BxGa1-xN合金而言是稳定的,而ZB(WZ)结构在两种情况下均稳定为0.25 <= x <= 0.9(x <0.25)。由于静电能,BxAl1-xN和BxGa1-xN合金。此外,由于化学能对过量能量的贡献,发现具有四重配位结构的BxAl1-xN和BxGa1-xN合金的混溶性高于具有十六进制结构的BxAl1-xN合金。这些结果表明,我们的经验性原子间电势方法对于阐明BxAl1-xN和BxGa1-xN合金中3倍配位的Hex结构以及4倍配位的WZ和ZB结构的结构稳定性是可行的。 (C)2019日本应用物理学会

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