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High pressure theoretical and experimental analysis of the bandgap of BaMoO_4, PbMoO_4, and CdMoO_4

机译:BaMoO_4,PbMoO_4和CdMoO_4带隙的高压理论和实验分析

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摘要

We have investigated the origin of the bandgap of BaMoO4, PbMoO4, and CdMoO4 crystals on the basis of optical absorption spectroscopy experiments and ab initio electronic band structure, density of states, and electronic localization function calculations under high pressure. Our study provides an accurate determination of the bandgaps E-g and their pressure derivatives dE(g)/dP for BaMoO4 (4.43eV, -4.4meV/GPa), PbMoO4 (3.45 eV, -53.8meV/GPa), and CdMoO4 (3.71eV, -3.3meV/GPa). The absorption edges were fitted with the Urbach exponential model which we demonstrate to be the most appropriate for thick crystals with direct bandgaps. So far, the narrowing of the bandgap of distinct PbMoO4 had been qualitatively explained considering only the presence of the Pb 6s levels at the top of its valence band. Its fast pressure dependent redshift and the occurrence of its direct bandgap away from Gamma in contrast to the other scheelites had remained unsolved. Here, we show that in contrast to what had been proposed and different from the other scheelites, in PbMoO4, the bandgap takes place between the Pb 6s levels at the top of the valence band and the antibonding O 2p levels at the bottom of the conduction band. For this reason, the direct bandgap is pushed away from the zone center in order to allow s-p mixing. Its pressure dependence is one order of magnitude faster than that in the other scheelites due to two effects: its delocalized character and the higher compressibility of dodecahedral units, PbO8, compared to tetrahedral units, MoO4. Published under license by AIP Publishing.
机译:我们基于光学吸收光谱实验和从头算起的电子能带结构,态密度以及在高压下的电子定位函数计算,研究了BaMoO4,PbMoO4和CdMoO4晶体的带隙起源。我们的研究提供了BaMoO4(4.43eV,-4.4meV / GPa),PbMoO4(3.45 eV,-53.8meV / GPa)和CdMoO4(3.71eV)的带隙Eg及其压力导数dE(g)/ dP的准确测定。 ,-3.3meV / GPa)。吸收边缘与Urbach指数模型拟合,我们证明了该模型最适合具有直接带隙的厚晶体。到目前为止,已经定性地解释了仅在价带顶部存在Pb 6s水平的情况下,不同PbMoO4的带隙变窄的现象。与其他方沸石相比,其快速的压力依赖性红移和直接的带隙离开伽玛的现象尚未解决。在这里,我们表明,与已提出的和与其他方铅矿不同的是,在PbMoO4中,带隙发生在价带顶部的Pb 6s能级与导电底部的抗键O 2p能级之间带。因此,直接带隙被推离区域中心,以便进行s-p混合。与以下两个方沸石相比,它的压力依赖性比其他方沸石快一个数量级:与四面体单元MoO4相比,其离域特性和十二面体单元PbO8的可压缩性更高。由AIP Publishing授权发布。

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  • 来源
    《Applied Physics Letters》 |2019年第1期|012102.1-012102.5|共5页
  • 作者单位

    Univ Valencia, Dept Fis Aplicada ICMUV, Calle Dr Moliner 50, E-46100 Burjassot, Spain;

    Univ Cantabria, DCITIMAC, Ave Castros 48, E-39005 Santander, Spain;

    Sorbonne Univ, CNRS, LCT, F-75005 Paris, France;

    Univ La Laguna, Inst Mat & Nanotecnol, Dept Fis, Tenerife 38205, Spain;

    Univ La Laguna, Inst Mat & Nanotecnol, Dept Fis, Tenerife 38205, Spain;

    Univ Valencia, Dept Fis Aplicada ICMUV, Calle Dr Moliner 50, E-46100 Burjassot, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 04:18:07

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