Zhang Qinghua, He Xu, Shi Jinan, Lu Nianpeng, Li Haobo, Yu Qian, Zhang Ze, Chen Long-Qing, Morris Bill, Xu Qiang, Yu Pu, Gu Lin, Jin Kuijuan, Nan Ce-Wen
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
State Key Lab of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China.
Nat Commun. 2017 Jul 24;8(1):104. doi: 10.1038/s41467-017-00121-6.
Oxygen ion transport is the key issue in redox processes. Visualizing the process of oxygen ion migration with atomic resolution is highly desirable for designing novel devices such as oxidation catalysts, oxygen permeation membranes, and solid oxide fuel cells. Here we show the process of electrically induced oxygen migration and subsequent reconstructive structural transformation in a SrCoO film by scanning transmission electron microscopy. We find that the extraction of oxygen from every second SrO layer occurs gradually under an electrical bias; beyond a critical voltage, the brownmillerite units collapse abruptly and evolve into a periodic nano-twined phase with a high c/a ratio and distorted tetrahedra. Our results show that oxygen vacancy rows are not only natural oxygen diffusion channels, but also preferred sites for the induced oxygen vacancies. These direct experimental results of oxygen migration may provide a common mechanism for the electrically induced structural evolution of oxides.Information on how oxygen ions transport is crucial to understanding field-induced phase transformations in materials. Here, Zhang et al. directly image atomic-scale oxygen migration and the subsequent structural reconstruction in a SrCoO film in the presence of an electric field.
氧离子传输是氧化还原过程中的关键问题。以原子分辨率可视化氧离子迁移过程对于设计新型器件(如氧化催化剂、氧渗透膜和固体氧化物燃料电池)非常有必要。在此,我们通过扫描透射电子显微镜展示了在SrCoO薄膜中电诱导氧迁移及随后的重构结构转变过程。我们发现,在电偏压下,每隔一层SrO层中的氧逐渐被提取;超过临界电压后,褐锰矿单元突然坍塌并演变成具有高c/a比和扭曲四面体的周期性纳米孪晶相。我们的结果表明,氧空位行不仅是天然的氧扩散通道,也是诱导氧空位的优先位点。这些氧迁移的直接实验结果可能为氧化物的电诱导结构演化提供一个通用机制。关于氧离子如何传输的信息对于理解材料中的场诱导相变至关重要。在此,张等人直接成像了电场作用下SrCoO薄膜中原子尺度的氧迁移及随后的结构重构。