Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.
Nano Lett. 2010 Sep 8;10(9):3420-5. doi: 10.1021/nl101439x.
The electrical bias driven Li-ion motion in silicon anode materials in thin film battery heterostructures is investigated using electrochemical strain microscopy (ESM), which is a newly developed scanning probe microscopy based characterization method. ESM utilizes the intrinsic link between bias-controlled Li-ion concentration and molar volume of electrode materials, providing the capability for studies on the sub-20 nm scale, and allows the relationship between Li-ion flow and microstructure to be established. The evolution of Li-ion transport during the battery charging is directly observed.
采用电化学应变显微镜(ESM)研究了薄膜电池异质结构中硅负极材料中受电偏压驱动的锂离子运动,这是一种新开发的基于扫描探针显微镜的特性分析方法。ESM 利用了偏压控制的锂离子浓度与电极材料摩尔体积之间的固有联系,具有在亚 20nm 尺度上进行研究的能力,并能够建立锂离子流动与微结构之间的关系。直接观察到电池充电过程中锂离子传输的演变。