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层数对α 一氧化铅的振动、电子和光学性质的影响。

Effects of the number of layers on the vibrational, electronic and optical properties of alpha lead oxide.

机构信息

Laboratoire de physique des matériaux, Université 8 Mai 1945 Guelma, BP 401 Guelma 24000, Algeria.

出版信息

Phys Chem Chem Phys. 2019 Feb 13;21(7):3868-3876. doi: 10.1039/c8cp07327a.

DOI:10.1039/c8cp07327a
PMID:30702102
Abstract

We have investigated the effects of the number of layers on the structure, vibrational, electronic and optical properties of α-PbO using first principles calculations. Our theoretical calculations have shown that four Raman active modes of α-PbO tend to red-shift from bulk to monolayer due to a decrease of the force constants and an increase of the bond lengths. It has been shown that while bulk and multilayer α-PbO have an indirect band gap, the monolayer form has a direct band gap value of 2.59 eV. Although lead atoms have 5d states, spin-orbit coupling does not significantly affect the band structure of α-PbO. The computed cleavage energy value (0.67 J m-2) confirms that monolayer PbO can be easily obtained from its bulk counterpart by exfoliation. In addition to the band structure, we also calculated the optical properties and absorbed photon flux Jabs of α-PbO structures to investigate the possibility of solar absorption. Our calculations reveal that while monolayer and bilayer PbO have relatively large band gaps and lower absorption coefficients, their Jabs values are not ideal for solar absorption devices. In contrast, the multilayer and bulk phases of the α-PbOs show good overlap with the solar spectrum and yield high electrical current values. Our calculations have indicated that ultrathin films of α-PbO (such as 3 nm thickness) could be excellent candidates for solar cells. We believe that our work can be utilized to improve electronic and optical devices based on lead oxide structures.

摘要

我们利用第一性原理计算研究了层数对α-PbO 结构、振动、电子和光学性质的影响。我们的理论计算表明,α-PbO 的四个拉曼活性模式由于力常数减小和键长增加而倾向于从体相红移到单层。结果表明,尽管体相和多层α-PbO 具有间接带隙,但单层形式的带隙值为 2.59 eV。尽管铅原子具有 5d 态,但自旋轨道耦合对α-PbO 的能带结构没有显著影响。计算出的剥离能值(0.67 J m-2)证实,通过剥离可以很容易地从其体相获得单层 PbO。除了能带结构,我们还计算了α-PbO 结构的光学性质和吸收光子通量 Jabs,以研究太阳能吸收的可能性。我们的计算表明,虽然单层和双层 PbO 具有较大的带隙和较低的吸收系数,但它们的 Jabs 值并不适合太阳能吸收器件。相比之下,α-PbO 的多层和体相表现出与太阳光谱的良好重叠,并产生高电流值。我们的计算表明,α-PbO 的超薄薄膜(如 3nm 厚度)可能是太阳能电池的优秀候选材料。我们相信,我们的工作可以用于改进基于氧化铅结构的电子和光学器件。

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