Qamar A, LeBlanc K, Semeniuk O, Reznik A, Lin J, Pan Y, Moewes A
Department of Physics and Engineering Physics, University of Saskatchewan, 116 Science Place, Saskatoon, SK, S7N 5E2, Canada.
Chemistry and materials science program, Lakehead University, 955 Oliver Road, Thunder Bay, ON, P7B 5E1, Canada.
Sci Rep. 2017 Oct 13;7(1):13159. doi: 10.1038/s41598-017-13703-7.
We investigated the electronic structure of Lead Oxide (PbO) - one of the most promising photoconductor materials for direct conversion x-ray imaging detectors, using soft x-ray emission and absorption spectroscopy. Two structural configurations of thin PbO layers, namely the polycrystalline and the amorphous phase, were studied, and compared to the properties of powdered α-PbO and β-PbO samples. In addition, we performed calculations within the framework of density functional theory and found an excellent agreement between the calculated and the measured absorption and emission spectra, which indicates high accuracy of our structural models. Our work provides strong evidence that the electronic structure of PbO layers, specifically the width of the band gap and the presence of additional interband and intraband states in both conduction and valence band, depend on the deposition conditions. We tested several model structures using DFT simulations to understand what the origin of these states is. The presence of O vacancies is the most plausible explanation for these additional electronic states. Several other plausible models were ruled out including interstitial O, dislocated O and the presence of significant lattice stress in PbO.
我们使用软X射线发射和吸收光谱法研究了氧化铅(PbO)的电子结构,氧化铅是用于直接转换X射线成像探测器最有前景的光电导体材料之一。研究了PbO薄层的两种结构构型,即多晶相和非晶相,并与粉末状α-PbO和β-PbO样品的性质进行了比较。此外,我们在密度泛函理论框架内进行了计算,发现计算得到的吸收和发射光谱与测量光谱之间具有很好的一致性,这表明我们的结构模型具有很高的准确性。我们的工作提供了有力证据,表明PbO层的电子结构,特别是带隙宽度以及导带和价带中额外的带间和带内状态的存在,取决于沉积条件。我们使用DFT模拟测试了几种模型结构,以了解这些状态的起源。氧空位的存在是这些额外电子态最合理的解释。排除了其他几种合理的模型,包括间隙氧、错位氧以及PbO中存在显著的晶格应力。