论文标题

在铁电氧化铁晶边界处的化学缺陷的定量3D映射

Quantitative 3D mapping of chemical defects at charged grain boundaries in a ferroelectric oxide

论文作者

Hunnestad, K. A., Schultheiß, J., Mathisen, A. C., Ushakov, I., Hatzoglou, C., van Helvoort, A. T. J., Meier, D.

论文摘要

氧化物界面处的极性不连续性和结构变化会导致各种电子和离子现象。相关效果已在外延系统中进行了深入研究,包括铁电域壁和超晶格中的界面。在这里,我们研究了多晶铁电ERMNO3中极性不连续性与局部化学之间的关系。使用定向映射和不同的扫描探针显微镜技术,我们证明了多晶材料会以增强的电子电导来形成带电的晶界。通过执行ATOM探针断层扫描测量,我们发现Erbium的富集和所有晶界的氧气消耗。观察到的组成变化转化为超过可能极化驱动的效应的电荷,表明结构现象而不是静电决定了电子传输行为的局部化学成分和相关变化。研究表明,带电的晶界的行为与带电的域壁截然不同,在极性氧化物界面上为房地产工程提供了更多机会。

Polar discontinuities and structural changes at oxide interfaces can give rise to a large variety of electronic and ionic phenomena. Related effects have been intensively studied in epitaxial systems, including ferroelectric domain walls and interfaces in superlattices. Here, we investigate the relation between polar discontinuities and the local chemistry at grain boundaries in polycrystalline ferroelectric ErMnO3. Using orientation mapping and different scanning probe microscopy techniques, we demonstrate that the polycrystalline material develops charged grain boundaries with enhanced electronic conductance. By performing atom probe tomography measurements, we find an enrichment of erbium and a depletion of oxygen at all grain boundaries. The observed compositional changes translate into a charge that exceeds possible polarization-driven effects, demonstrating that structural phenomena rather than electrostatics determine the local chemical composition and related changes in the electronic transport behavior. The study shows that the charged grain boundaries behave distinctly different from charged domain walls, giving additional opportunities for property engineering at polar oxide interfaces.

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