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关于氧空位对ABO(A = 镧,锶;B = 铬,锰)钙钛矿电子和光学性质影响的第一性原理研究

First-principles exploration of oxygen vacancy impact on electronic and optical properties of ABO (A = La, Sr; B = Cr, Mn) perovskites.

作者信息

Park Jongwoo, Wu Yu-Ning, Saidi Wissam A, Chorpening Benjamin, Duan Yuhua

机构信息

National Energy Technology Laboratory, United States Department of Energy, Pittsburgh, PA 15236, USA.

出版信息

Phys Chem Chem Phys. 2020 Dec 7;22(46):27163-27172. doi: 10.1039/d0cp05445c.

DOI:10.1039/d0cp05445c
PMID:33226052
Abstract

ABO3-δ perovskites are utilized in many applications including optical gas sensing for energy systems. Understanding the opto-electronic properties allows rational selection of the perovskite-based sensors from a diverse family of ABO3-δ perovskites, associated with the choices of A and B cations and range of oxygen concentrations. Herein, we assess the impact of oxygen vacancies on the electronic structure and optical response of pristine and oxygen-vacant ABO3-δ (A = La, Sr; B = Cr, Mn) perovskites via first-principles calculations. The endothermic formation energy for oxygen vacancies shows that the generation of ABO3-δ defect structures is thermodynamically possible. LaCrO3 and LaMnO3 have direct and indirect ground-state band gaps, respectively, whereas SrCrO3 and SrMnO3 are metallic. In the presence of an oxygen mono-vacancy, however, the band gap decreases in LaCrO3-δ and vanishes in LaMnO3-δ. In contrast to the decrease in the band gaps, the oxygen vacancies in ABO3-δ are found to increase optical absorption in the visible to near-infrared wavelength regime, and thus lower the onset energy of absorption compared with the pristine materials. Our assessments emphasize the role of the oxygen vacancy, or other possible oxygen non-stoichiometry defects, in perovskite oxides with respect to the opto-electronic performance parameters that are of interest for optical gas sensors for energy generation process environments.

摘要

ABO₃₋δ钙钛矿被应用于许多领域,包括能源系统中的光学气体传感。了解其光电特性有助于从种类繁多的ABO₃₋δ钙钛矿中合理选择基于钙钛矿的传感器,这与A和B阳离子的选择以及氧浓度范围有关。在此,我们通过第一性原理计算评估了氧空位对原始和有氧空位的ABO₃₋δ(A = La、Sr;B = Cr、Mn)钙钛矿的电子结构和光学响应的影响。氧空位的吸热形成能表明ABO₃₋δ缺陷结构的产生在热力学上是可能的。LaCrO₃和LaMnO₃分别具有直接和间接的基态带隙,而SrCrO₃和SrMnO₃是金属性的。然而,在存在单氧空位的情况下,LaCrO₃₋δ的带隙减小,而LaMnO₃₋δ的带隙消失。与带隙减小相反,发现ABO₃₋δ中的氧空位会增加可见光到近红外波长范围内的光吸收,因此与原始材料相比降低了吸收起始能量。我们的评估强调了氧空位或其他可能的氧非化学计量缺陷在钙钛矿氧化物中对于能源生产过程环境中的光学气体传感器所关注的光电性能参数的作用。

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