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首页> 外文期刊>Physics of the solid state >The Structure of Defects, the Electron Energy-Band Structure, and the Semiconductor-Metal Transition in PrBaCo2O5.5 Cobaltite: Ab Initio PAW Approach
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The Structure of Defects, the Electron Energy-Band Structure, and the Semiconductor-Metal Transition in PrBaCo2O5.5 Cobaltite: Ab Initio PAW Approach

机译:PrBaco2O5.5钴矿石中的缺陷,电子能带结构和半导体 - 金属转变的结构:AB Initio Paw方法

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摘要

The electronic energy-band structure of the PrBaCo2O5 + delta cobaltite at the oxygen content close to 5.5 are calculated by the first-principle PAW methods. The semiconductor-metal phase transition at 5 + delta = 5.5 is shown to be a result of the transition of cobalt atoms in the octahedral environment from the high-spin to low-spin state. The cause of the appearance of the metallic conduction is an increase in the energy of antibonding e(g) states of pyramidal cobalt atoms, and, as a result, they are at the Fermi level, thereby determining the metallic character of the system. The effect of a deviation of the oxygen content from 5.5 on the energy-band structure and the conductivity is studied. The semiconductor-metal transition is shown can be observed only in a narrow range of the values of 5 + delta lower 5.5.
机译:用第一性原理PAW方法计算了氧含量接近5.5时PrBaCo2O5+δ钴酸盐的电子能带结构。结果表明,在5+δ=5.5时,半导体-金属相变是八面体环境中钴原子从高自旋态向低自旋态转变的结果。出现金属导电的原因是锥体钴原子的反键e(g)态的能量增加,因此,它们处于费米能级,从而决定了系统的金属特性。研究了氧含量偏离5.5对能带结构和电导率的影响。所示的半导体-金属转变只能在5+δ-5.5以下的狭窄范围内观察到。

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