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纳米尺度 SnO2 材料中嵌锂反应前沿的原子尺度观察。

Atomic-scale observation of lithiation reaction front in nanoscale SnO2 materials.

机构信息

Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, 1400 Townsend Drive, Houghton, Michigan 49931, USA.

出版信息

ACS Nano. 2013 Jul 23;7(7):6203-11. doi: 10.1021/nn402125e. Epub 2013 Jun 10.

Abstract

In the present work, taking advantage of aberration-corrected scanning transmission electron microscopy, we show that the dynamic lithiation process of anode materials can be revealed in an unprecedented resolution. Atomically resolved imaging of the lithiation process in SnO2 nanowires illustrated that the movement, reaction, and generation of b = [1[overline]1[overline]1] mixed dislocations leading the lithiated stripes effectively facilitated lithium-ion insertion into the crystalline interior. The geometric phase analysis and density functional theory simulations indicated that lithium ions initial preference to diffuse along the [001] direction in the {200} planes of SnO2 nanowires introduced the lattice expansion and such dislocation behaviors. At the later stages of lithiation, the Li-induced amorphization of rutile SnO2 and the formation of crystalline Sn and LixSn particles in the Li2O matrix were observed.

摘要

在本工作中,我们利用像差校正扫描透射电子显微镜,以空前的分辨率揭示了阳极材料的动态锂化过程。在 SnO2 纳米线的锂化过程的原子分辨成像中,说明了 b = [1[overline]1[overline]1]混合位错的运动、反应和产生,这些位错有效地引导了锂化条纹,从而促进了锂离子插入晶体内部。几何相位分析和密度泛函理论模拟表明,锂离子最初倾向于在 SnO2 纳米线的 {200} 面的[001]方向上扩散,这导致了晶格膨胀和这种位错行为。在锂化的后期阶段,观察到了金红石 SnO2 的 Li 诱导非晶化以及在 Li2O 基体中形成结晶 Sn 和 LixSn 颗粒。

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