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Chemical structure of grain-boundary layer in SrTiO3 and its segregation-induced transition: A continuum interface approach

机译:SrTiO3中晶界层的化学结构及其偏析诱导的转变:连续界面方法

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摘要

Grain-boundary (GB) structures are commonly imaged as discrete atomic columns,yet the chemical modifications are gradual and extend into the adjacent lattices,notably the space charge,hence the two-dimensional defects may also be treated as continuum changes to extended interfacial structure.This review presents a spatially-resolved analysis by electron energy-loss spectroscopy of the GB chemical structures in a series of SrTiO3 bicrystals and a ceramic,using analytical electron microscopy of the pre-Cs-correction era.It has identified and separated a transient layer at the model Σ5 grain-boundaries (GBs) with characteristic chemical bonding,extending the continuum interfacial approach to redefine the GB chemical structure.This GB layer has evolved under segregation of iron dopant,starting from subtle changes in local bonds until a clear transition into a distinctive GB chemistry with substantially increased titanium concentration confined within the GB layer in 3-unit cells,heavily strained,and with less strontium.Similar segregated GB layer turns into a titania-based amorphous film in SrTiO3 ceramic,hence reaching a more stable chemical structure in equilibrium with the intergranular Ti2O3 glass also.Space charge was not found by acceptor doping in both the strained Σ5 and amorphous GBs in SrTiO3 owing to the native transient nature of the GB layer that facilitates the transitions induced by Fe segregation into novel chemical structures subject to local and global equilibria.These GB transitions may add a new dimension into the structure-property relationship of the electronic materials.
机译:晶界(GB)结构通常被成像为离散的原子列,但是化学修饰是逐渐的并延伸到相邻的晶格中,特别是空间电荷,因此二维缺陷也可以被视为连续的扩展界面结构的变化。本文通过电子能量损失光谱对Cs校正前时代的分析电子显微镜对一系列SrTiO3双晶和陶瓷中的GB化学结构进行了空间分辨分析。具有特征性化学键的Σ5型晶界(GBs)模型层,扩展了连续界面方法以重新定义GB化学结构。该GB层是在铁掺杂剂偏析下演化的,从局部键的细微变化开始直至明显过渡转变成独特的GB化学结构,钛浓度显着增加,限制在3单元电池的GB层内类似的偏析GB层在SrTiO3陶瓷中转变成二氧化钛基非晶膜,因此与晶间Ti2O3玻璃也达到了更稳定的化学结构。两个受主掺杂均未发现空间电荷由于GB层的固有瞬态特性促进了Fe偏析引起的转变成具有局部和全局平衡的新型化学结构,因此SrTiO3中的Σ5和无定形GBs发生了应变。电子材料。

著录项

  • 来源
    《中国物理:英文版》 |2018年第6期|1-10|共10页
  • 作者

    Hui Gu;

  • 作者单位

    School of Materials Science & Engineering, Materials Genome Institute, Shanghai University, Shanghai 200444, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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