Liu Siyuan, Zhou Dan, Cui Manai, Xu Jing, Ma Xuejiao, Cheng Yuheng, Jin Zhexue, Liu Yanhui
Department of Physics, College of Science, Yanbian University Yanji 133000 China
School of Science, Changchun University of Science and Technology Changchun 130000 China
RSC Adv. 2020 May 20;10(33):19185-19191. doi: 10.1039/d0ra01629b.
The search for novel structures and chemical stoichiometry of binary Ir-Sb compounds is of great importance in view of their catalytic applications. Based on the results of swarm structure searching technique combined with density functional theory, we proposed the hitherto unknown Ir-Sb phase diagram in a wide pressure range with various chemical compositions. Besides two ambient pressure phases of IrSb-Im3̄ and IrSb-2/, five novel phases of IrSb-2/, IrSb-1̄, IrSb-4̄21, IrSb-4/ and IrSb- were identified at high pressures. The phonon dispersion curves reveal that these phases are all dynamically stable. The calculated electronic results show that a mixed behavior of covalent, ionic and metallic bonds simultaneously exits in these novel phases. A pressure-induced electronic topological transition in IrSb- phase occurs according to the theoretical electronic band structures, while is not shown in other stoichiometries of the Ir-Sb system. Our work provides a potential opportunity for experimental synthesis of crystal structures with different chemical stoichiometries of the binary Ir-Sb system.
鉴于二元铱 - 锑化合物的催化应用,探索其新颖结构和化学计量比具有重要意义。基于群体结构搜索技术与密度泛函理论相结合的结果,我们提出了在宽压力范围和各种化学组成下迄今未知的铱 - 锑相图。除了常压下的IrSb - Im3̄和IrSb - 2/相外,在高压下还鉴定出了五个新相,分别为IrSb - 2/、IrSb - 1̄、IrSb - 4̄21、IrSb - 4/和IrSb - 。声子色散曲线表明这些相都是动态稳定的。计算得到的电子结果表明,在这些新相中同时存在共价键、离子键和金属键的混合行为。根据理论电子能带结构,IrSb - 相发生了压力诱导的电子拓扑转变,而在铱 - 锑系统的其他化学计量比中未出现这种情况。我们的工作为二元铱 - 锑系统中具有不同化学计量比的晶体结构的实验合成提供了潜在机会。