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Titanium enrichment and strontium depletion near edge dislocation in strontium titanate [001]/(110) low-angle tilt grain boundary

机译:钛酸锶[001] /(110)低角度倾斜晶界中位错附近的钛富集和锶耗尽

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摘要

Dislocations are linear lattice defects in a crystalline solid. Since the unusual atomistic environment of the dislocation may greatly influence various material properties, control of the composition would offer more opportunities to obtain unique one-dimensional structures. In the present study, we have characterized the structure of dislocations in a low-angle tilt grain boundary of strontium titanate (SrTiO_3). High-spatial resolution elemental mapping by electron energy loss spectroscopy combined with scanning transmission electron microscopy has enabled visualization of the enrichment of titanium (Ti) and the depletion of strontium (Sr) near the dislocation cores. The Ti enrichment and the Sr depletion have been observed at all of the dislocations, and the grain boundary is considered to be Ti excess. The extra Ti ions are located on the positions different from the normal perovskite lattice, suggesting that the local structure is largely reconstructed. It has been proposed that tensile strain at the dislocations may be a cause of the Ti enrichment.
机译:位错是结晶固体中的线性晶格缺陷。由于位错的异常原子环境可能会极大地影响各种材料的性能,因此对成分的控制将为获得独特的一维结构提供更多机会。在本研究中,我们已经表征了钛酸锶(SrTiO_3)的低角度倾斜晶界中的位错结构。通过电子能量损失谱与扫描透射电子显微镜相结合的高空间分辨率元素图谱,可以观察到位错核心附近钛(Ti)的富集和锶(Sr)的贫化。在所有位错处都观察到Ti富集和Sr耗尽,并且晶界被认为是Ti过量。多余的Ti离子位于与正常钙钛矿晶格不同的位置,这表明局部结构在很大程度上得以重建。已经提出,位错处的拉伸应变可能是Ti富集的原因。

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