Department of Physics, Arizona State University , Tempe, Arizona 85287, United States.
Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory , Richland, Washington 99352, United States.
Nano Lett. 2016 Jun 8;16(6):3748-53. doi: 10.1021/acs.nanolett.6b01099. Epub 2016 May 27.
The successful operation of rechargeable batteries relies on reliable insertion/extraction of ions into/from the electrodes. The battery performance and the response of the electrodes to such ion insertion and extraction are directly related to the spatial distribution of the charge and its dynamic evolution. However, it remains unclear how charge is distributed in the electrodes during normal battery operation. In this work, we have used off-axis electron holography to measure charge distribution during lithium ion insertion into a Ge nanowire (NW) under dynamic operating conditions. We discovered that the surface region of the Ge core is negatively charged during the core-shell lithiation of the Ge NW, which is counterbalanced by positive charge on the inner surface of the lithiated LixGe shell. The remainder of the lithiated LixGe shell is free from net charge, consistent with its metallic characteristics. The present work provides a vivid picture of charge distribution and dynamic evolution during Ge NW lithiation and should form the basis for tackling the response of these and related materials under real electrochemical conditions.
可充电电池的成功运行依赖于离子在电极中可靠地插入/提取。电池的性能以及电极对这种离子插入和提取的响应直接与电荷的空间分布及其动态演化有关。然而,在正常的电池运行过程中,电荷是如何在电极中分布的,目前仍不清楚。在这项工作中,我们使用离轴电子全息术来测量在动态工作条件下锂离子插入 Ge 纳米线(NW)时的电荷分布。我们发现,在 Ge NW 的核壳锂化过程中,Ge 核的表面区域带负电荷,这被 LixGe 壳的内表面上的正电荷所平衡。其余的 LixGe 壳没有净电荷,这与其金属特性一致。本工作生动地描绘了 Ge NW 锂化过程中的电荷分布和动态演化,并应为解决这些和相关材料在实际电化学条件下的响应奠定基础。