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Insight into the Effects of Fe Addition on the Local Structure and Electronic Properties of SrTiO3

机译:添加Fe对srTiO3局域结构和电子性质影响的探讨

摘要

This paper reports an experimental and theoretical investigation of the effects of adding Fe to the perovskite strontium titanate SrTiO3. The effects include changes in the short-order range structure as well as in the electronic and electrical properties. X-ray diffraction analysis reveals that the SrTi1–xFexO3 network shrinks with increasing Fe content, while X-ray absorption spectroscopy measurements of the Ti and Fe K-edge revealed the presence of some under-coordinated TiO5 units created because of the partial replacement of Fe3+ ions in the Ti4+ site. UV–visible absorption spectra indicated a reduction in optical gap with increasing Fe content. The electronic structure and spin densities of STFO with x = 0, 0.0625, 0.125, 0.5, and 1 are calculated by the DFT method at the B3LYP computational level, showing a Jahn–Teller distortion of O atoms surrounding the Fe as well as the formation of under-coordinated TiO5 units. From the electrical viewpoint, the results show that STFO is a mixed (ionic and electronic) conductor and that the electronic contribution becomes dominant with increasing Fe content.
机译:本文报道了在钙钛矿钛酸锶锶SrTiO3中添加铁的效果的实验和理论研究。这些影响包括短程结构的变化以及电子和电气性能的变化。 X射线衍射分析表明,随着Fe含量的增加,SrTi1–xFexO3网络收缩,而Ti和Fe K边缘的X射线吸收光谱测量表明存在部分配位不足的TiO5单元,这是由于部分取代了Fe。 Ti4 +位中的Fe3 +离子。紫外可见吸收光谱表明,随着铁含量的增加,光学间隙的减小。通过DFT方法在B3LYP计算级别上计算出x = 0、0.0625、0.125、0.5和1的STFO的电子结构和自旋密度,显示出Fe周围O原子的Jahn-Teller畸变配位不足的TiO5单元。从电学观点来看,结果表明STFO是一种混合的(离子和电子)导体,并且随着Fe含量的增加,电子贡献变得占主导地位。

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