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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Tuning the band gap of PbCrO_4 through high-pressure: Evidence of wide-to-narrow semiconductor transitions
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Tuning the band gap of PbCrO_4 through high-pressure: Evidence of wide-to-narrow semiconductor transitions

机译:通过高压调谐PbCrO_4的带隙:宽窄半导体跃迁的证据

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摘要

The electronic transport properties and optical properties of lead(II) chromate (PbCrO_4) have been studied at high pressure by means of resistivity, Hall-effect, and optical-absorption measurements. Band-structure first-principle calculations have been also performed. We found that the low-pressure phase is a direct band-gap semiconductor (Eg = 2.3 eV) that shows a high resistivity. At 3.5 GPa, associated to a structural phase transition, a band-gap collapse takes place, becoming Eg = 1.8 eV. At the same pressure the resistivity suddenly decreases due to an increase of the carrier concentration. In the HP phase, PbCrO_4 behaves as an n-type semiconductor, with a donor level probably associated to the formation of oxygen vacancies. At 15 GPa a second phase transition occurs to a phase with Eg = 1.2 eV. In this phase, the resistivity increases as pressure does probably due to the self-compensation of donor levels and the augmentation of the scattering of electrons with ionized impurities. In the three phases the band gap red shifts under compression. At 20 GPa, Eg reaches a value of 0.8 eV, behaving PbCrO_4 as a narrow-gap semiconductor.
机译:通过高压,电阻率,霍尔效应和光吸收测量,研究了铬酸铅(II)(PbCrO_4)的电子输运性质和光学性质。带结构第一性原理计算也已经执行。我们发现,低压相是具有高电阻率的直接带隙半导体(Eg = 2.3 eV)。在3.5 GPa时,与结构相变相关,发生了带隙塌陷,变为Eg = 1.8 eV。在相同压力下,电阻率由于载流子浓度的增加而突然降低。在HP相中,PbCrO_4表现为n型半导体,其施主能级可能与氧空位的形成有关。在15 GPa时,发生第二个相变,转变为Eg = 1.2 eV的相。在此阶段,电阻率随压力的增加而增加,这可能是由于施主能级的自补偿和离子化杂质对电子散射的增强所致。在三个阶段中,带隙红在压缩下移动。在20 GPa时,Eg达到0.8 eV,表现为PbCrO_4为窄带隙半导体。

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