外延
薄膜
材料科学
图层(电子)
氧化态
调制(音乐)
光电子学
分析化学(期刊)
矿物学
光学
化学
纳米技术
冶金
物理
金属
色谱法
声学
作者
Krishna Prasad Koirala,Mohammad Delower Hossain,Le Wang,Zengqing Zhuo,Wanli Yang,Mark Bowden,Steven R. Spurgeon,Chongmin Wang,Peter V. Sushko,Yingge Du
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-10-31
标识
DOI:10.1021/acs.nanolett.4c03660
摘要
Understanding how doping influences physicochemical properties of ABO3 perovskite oxides is critical for tailoring their functionalities. In this study, SrFe0.67Cr0.33O3−δ epitaxial thin films were used to examine the effects of Fe and Cr competition on structure and B-site cation oxidation states. The films exhibit a perovskite-like structure near the film/substrate interface, while a brownmillerite-like structure with horizontal oxygen vacancy channels predominates near the surface. Electron energy loss spectroscopy shows Fe remains Fe3+, while Cr varies from ∼Cr3+ (tetrahedral layers) to ∼Cr4+ (octahedral layers) within brownmillerite phases and becomes ∼Cr4.5+ in perovskite-like phases. Theoretical simulations indicate that Cr–O bond arrangements and the way oxygen vacancies interact with Cr and Fe drive Cr charge disproportionation. High-valent Cr cations introduce additional densities of states near the Fermi level, reducing the optical bandgap from ∼2.0 eV (SrFeO2.5) to ∼1.7 eV (SrFe0.67Cr0.33O3−δ). These findings offer insights into B-site cation doping in the perovskite oxide framework.
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