Yu Jinying, Zhang Mingke, Zhang Zihan, Wang Shangwei, Wu Yelong
School of Physics, Northwest University Xi'an Shaanxi 710069 China.
Key Laboratory of Nonequilibrium Synthesis and Modulation of Condensed Matter (Xi'an Jiaotong University), Ministry of Education Xi'an Shaanxi 710049 China
RSC Adv. 2019 Mar 13;9(15):8507-8514. doi: 10.1039/c9ra00362b. eCollection 2019 Mar 12.
Using the hybrid exchange-correlation functional within the density-functional theory, we have systematically investigated the structural and electronic properties of MO (M = Be, Mg, Ca, Sr, Ba, Zn, Cd) in binary rock salt (B1), zinc-blende (B3) and wurtzite (B4) phases, including the structural parameters, bulk moduli, band gaps and deformation potentials. Our results agree well with the experimental data and other theoretical results, and give a better understanding of the relationship between the geometric and electronic structure. After calculating the band alignment, we find that in both the B1 and B3 structures, the valence band maximum (VBM) has an obvious decrease from BeO to MgO to CaO, then it goes up from SrO to BaO to ZnO to CdO. Moreover, the properties of the ternary alloys M Zn O were studied through the application of the special quasi-random structure method. The critical value of the ZnO composition for the transition from the B3 structure to the B1 structure gradually increases from (Ca, Zn)O to (Mg, Zn)O to (Sr, Zn)O to (Ba, Zn)O to (Cd, Zn)O, indicating that (Ca, Zn)O can exist in the B3 structure with the lowest ZnO composition. These results provide a good guideline for the accessible phase space in these alloy systems.
利用密度泛函理论中的杂化交换关联泛函,我们系统地研究了MO(M = Be、Mg、Ca、Sr、Ba、Zn、Cd)在岩盐(B1)、闪锌矿(B3)和纤锌矿(B4)二元相中的结构和电子性质,包括结构参数、体模量、带隙和形变势。我们的结果与实验数据和其他理论结果吻合良好,并且能更好地理解几何结构与电子结构之间的关系。在计算能带排列后,我们发现,在B1和B3结构中,价带顶(VBM)从BeO到MgO再到CaO有明显下降,然后从SrO到BaO再到ZnO最后到CdO又上升。此外,通过应用特殊准随机结构方法研究了三元合金M Zn O的性质。从B3结构转变为B1结构时ZnO组成的临界值从(Ca,Zn)O到(Mg,Zn)O再到(Sr,Zn)O、(Ba,Zn)O最后到(Cd,Zn)O逐渐增加,这表明(Ca,Zn)O能以最低的ZnO组成存在于B3结构中。这些结果为这些合金体系中可及的相空间提供了很好的指导。