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LiCoO₂中锂离子的原子分辨率

Atomic resolution of lithium ions in LiCoO2.

作者信息

Shao-Horn Yang, Croguennec Laurence, Delmas Claude, Nelson E Chris, O'Keefe Michael A

机构信息

Department of Mechanical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.

出版信息

Nat Mater. 2003 Jul;2(7):464-7. doi: 10.1038/nmat922.

Abstract

LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely to power portable electronic devices such as laptop computers. Operation of lithium rechargeable batteries is dependent on reversible lithium insertion and extraction processes into and from the host materials of lithium storage. Ordering of lithium and vacancies has a profound effect on the physical properties of the host materials and the electrochemical performance of lithium batteries. However, probing lithium ions has been difficult when using traditional X-ray and neutron powder diffraction techniques due to lithium's relatively low scattering power when compared with those of oxygen and transition metals. In the work presented here, we have succeeded in simultaneously resolving columns of cobalt, oxygen and lithium atoms in layered LiCoO2 battery material, using experimental focal series of LiCoO2 images obtained at sub-ångstrom resolution in a mid-voltage transmission electron microscope. Lithium atoms are the smallest and lightest metal atoms, and scatter electrons only very weakly. We believe our observations of lithium to be the first by electron microscopy, and that they show promise for direct visualization of the ordering of lithium and vacancies in transition metal oxides.

摘要

LiCoO₂ 是锂可充电电池中最常见的锂存储材料,广泛用于为笔记本电脑等便携式电子设备供电。锂可充电电池的运行取决于锂在锂存储主体材料中的可逆嵌入和脱出过程。锂和空位的有序排列对主体材料的物理性质和锂电池的电化学性能有深远影响。然而,与氧和过渡金属相比,锂的散射能力相对较低,因此使用传统的 X 射线和中子粉末衍射技术探测锂离子一直很困难。在本文介绍的工作中,我们利用在中压透射电子显微镜中以亚埃分辨率获得的 LiCoO₂ 图像的实验聚焦系列,成功地同时解析了层状 LiCoO₂ 电池材料中钴、氧和锂原子的列。锂原子是最小且最轻的金属原子,散射电子的能力非常弱。我们相信我们对锂的观察是通过电子显微镜首次实现的,并且这些观察结果有望直接可视化过渡金属氧化物中锂和空位的确序。

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