Monitoring the formation of infinite-layer transition metal oxides through in situ atomic-resolution electron microscopy

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초록

Infinite-layer transition metal oxides with two-dimensional oxygen coordination exhibit intriguing electronic and magnetic properties due to strong in-plane orbital hybridization. The synthesis of this distinctive structure has primarily relied on kinetically controlled reduction of oxygen-rich phases featuring three-dimensional polyhedral oxygen coordination. Here, using in situ atomic-resolution electron microscopy, we scrutinize the intricate atomic-scale mechanisms of oxygen conduction leading to the transformation of SrFeO2.5 to infinite-layer SrFeO2. The oxygen release is highly anisotropic and governed by the lattice reorientation aligning the fast diffusion channels towards the outlet, which is facilitated by cooperative yet shuffle displacements of iron and oxygen ions. Accompanied with the oxygen release, the three-dimensional to two-dimensional reconfiguration of oxygen is facilitated by the lattice flexibility of FeOx polyhedral layers, adopting multiple discrete transient states following the sequence determined by the least energy-costing pathways. Similar transformation mechanism may operate in cuprate and nickelate superconductors, which are isostructural with SrFeO2. Understanding the structural rearrangements of infinite-layer transition metal oxides at the atomic level remains challenging. Now in situ electron microscopy has been used to monitor the formation of infinite-layer SrFeO2 through an oxygen deintercalation process; lattice flexibility of the FeOx polyhedral layers facilitates the phase transformation.

키워드

OXYGEN DIFFUSION; IRON; SUPERCONDUCTIVITY; CRYSTAL; POINTS
제목
Monitoring the formation of infinite-layer transition metal oxides through in situ atomic-resolution electron microscopy
저자
Xing, Yaolong; Kim, Inhwan; Kang, Kyeong Tae; Byun, Jinho; Choi, Woo Seok; Lee, Jaekwang; Oh, Sang Ho
DOI
10.1038/s41557-024-01617-7
발행일
2025-01
유형
Article
저널명
Nature Chemistry
권
17
호
1
페이지
66 ~ 73