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首页> 外文期刊>Journal of Physics. Condensed Matter >A study of structural phase transitions and optoelectronic properties of perovskite-type hydride MgFeH3: ab initio calculations
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A study of structural phase transitions and optoelectronic properties of perovskite-type hydride MgFeH3: ab initio calculations

机译:钙钛矿型氢化物MgFeh3的结构相转变和光电性能研究:AB INITIO计算

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摘要

In this study, the structural phase transition and optoelectronic properties of perovskite-hydride MgFeH3 under high pressure have been performed by ab initio calculations based on GGA-PBE functional. The phase transitions were observed from the cubic structure (Pm (3) over barm) to the orthorhombic (Pmn2(1)) and (Pmmn) structure. During the phase transition, the R (3) over barm,P1, Pm and P2121(2) intermediate phases were predicted. The energy-volume (E-V) relationships show that the most stable phase is Pm (3) over barm. The lattice parameters and volume increased as based on the phase transforms. From the electronic band analysis, the MgFeH3 shows a metallic character from the cubic to orthorhombic structure. The MgFeH3 indicates the peaks at 2.67 eV (464 nm) for Pm (3) over barm phase, 5.21 eV (238 nm) for Pmn2(1) phase and 2.63 eV (471 nm) for Pmmn phase. Pm (3) over barm and Pmmn phases correspond to the visible region. The absorption peaks are getting wider and have higher magnitude from Pm (3) over barm to Pmmn phase. The optical conductivity for the cubic structure with Pm (3) over barm phase was found to be higher than orthorhombic structures with Pmn2(1), and Pmmn phases. The reflectivity maxima decrease from Pm (3) over barm to Pmn2(1).
机译:在该研究中,通过基于GGA-PBE功能的AB Initio计算进行了高压下钙钛矿 - 氢化物MgFeh3的结构相转变和光电性。从立方结构(PM(3)上方)到正交(PMN2(1))和(PMMN)结构中观察相移转变。在相转变期间,预测了在BARM,P1,PM和P2121(2)中间相的R(3)。能量体积(E-V)关系表明,最稳定的阶段是PM(3)在BARM上。基于相位变换的晶格参数和体积增加。从电子频带分析中,MgFeh3显示了从立方体到正交结构的金属特征。 MgFeh3表示PMMN2(1)相的PM(3)对PM(3)的PM(3)的峰值(3),5.21eV(238nm)和2.63eV(471nm)的PMMN相。 PM(3)通过BARM和PMMN阶段对应于可见区域。吸收峰越来越宽,并且从PM(3)上的PM(3)较高到PMMN相。发现具有PM(3)的立方结构的光学导电率在BARM阶段高于具有PMN2(1)和PMMN阶段的正交结构。反射率最大值从PM(3)减少到PMN2(1)。

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