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Li 促进的八面体倾斜有序及相关应变在纳米结构钙钛矿中的直接映射。

Direct mapping of Li-enabled octahedral tilt ordering and associated strain in nanostructured perovskites.

机构信息

Department of Materials Science and Engineering, Monash University, Victoria 3800, Australia.

Research School of Chemistry, College of Physical and Mathematical Sciences, The Australian National University, Canberra, Australian Capital Territory 0200, Australia.

出版信息

Nat Mater. 2015 Nov;14(11):1142-9. doi: 10.1038/nmat4390. Epub 2015 Aug 31.

Abstract

Self-assembled nanostructures with periodic phase separation hold great promise for creating two- and three-dimensional superlattices with extraordinary physical properties. Understanding the mechanism(s) driving the formation of such superlattices demands an understanding of their underlying atomic structure. However, the nanoscale structural fluctuations intrinsic to these superlattices pose a new challenge for structure determination methods. Here we develop an optimized atomic-level imaging condition to measure TiO6 octahedral tilt angles, unit-cell-by-unit-cell, in perovskite-based Li(0.5-3x)Nd(0.5+x)TiO3, and thereby determine the mathematical formula governing this nanoscale superstructure. We obtain a direct real-space correlation of the octahedral tilt modulation with the superstructure geometry and lattice-parameter variations. This reveals a composition-dependent, self-ordered octahedral superlattice. Amazingly, we observe a reversible annihilation/reconstruction of the octahedral superlattice correlated with the delithiation/lithiation process in this promising Li-ion conductor. This approach to quantify local octahedral tilt and correlate it with strain can be applied to characterize complex octahedral behaviours in other advanced oxide systems.

摘要

具有周期性相分离的自组装纳米结构有望构建具有非凡物理性能的二维和三维超晶格。理解形成这种超晶格的机制需要了解其潜在的原子结构。然而,这些超晶格固有的纳米级结构波动给结构确定方法带来了新的挑战。在这里,我们开发了一种优化的原子级成像条件,以逐单元测量钙钛矿基 Li(0.5-3x)Nd(0.5+x)TiO3 中的 TiO6 八面体倾斜角,并由此确定控制这种纳米超结构的数学公式。我们获得了八面体倾斜调制与超结构几何形状和晶格参数变化的直接实空间相关性。这揭示了一种与超结构几何形状和晶格参数变化具有组成依赖性的自有序八面体超晶格。令人惊讶的是,我们观察到八面体超晶格与该有前途的锂离子导体的脱锂/锂化过程相关的可逆湮灭/重构。这种量化局部八面体倾斜并将其与应变相关联的方法可用于表征其他先进氧化物系统中复杂的八面体行为。

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