Alptekin Sebahaddin
Department of Physics, Çankırı Karatekin University, 18100, Çankırı, Turkey.
J Mol Model. 2017 Aug 11;23(9):261. doi: 10.1007/s00894-017-3422-9.
Beryllium telluride (BeTe) with cubic zinc-blende (ZB) structure was studied using ab initio constant pressure method under high pressure. The ab initio molecular dynamics (MD) approach for constant pressure was studied and it was found that the first order phase transition occurs from the ZB structure to the nickel arsenide (NiAs) structure. It has been shown that the MD simulation predicts the transition pressure P more than the value obtained by the static enthalpy and experimental data. The structural pathway reveals MD simulation such as cubic → tetragonal → orthorhombic → monoclinic → orthorhombic → hexagonal, leading the ZB to NiAs phase. The phase transformation is accompanied by a 10% volume drop and at 80 GPa is likely to be around 35 GPa in the experiment. In the present study, our obtained values can be compared with the experimental and theoretical results. Graphical abstract The energy-volume relation and ZB phase for the BeTe.
采用从头算恒压方法,在高压下对具有立方闪锌矿(ZB)结构的碲化铍(BeTe)进行了研究。研究了恒压下的从头算分子动力学(MD)方法,发现发生了从ZB结构到砷化镍(NiAs)结构的一级相变。结果表明,MD模拟预测的转变压力P高于通过静态焓和实验数据获得的值。结构路径揭示了MD模拟,如立方→四方→正交→单斜→正交→六方,导致ZB向NiAs相转变。相变伴随着10%的体积下降,在80GPa时,实验中可能约为35GPa。在本研究中,我们获得的值可以与实验和理论结果进行比较。图形摘要BeTe的能量-体积关系和ZB相。