Department of Mechanical Engineering, University of Colorado, Boulder, Colorado 80309, USA.
Nano Lett. 2012 Feb 8;12(2):655-60. doi: 10.1021/nl203434g. Epub 2012 Jan 6.
The areal capacity of nanowire-based microbatteries can be potentially increased by increasing the length of nanowires. However, agglomeration of high aspect ratio nanowire arrays could greatly degrade the performance of nanowires for lithium ion (Li-ion) battery applications. In this work, a three-dimensional (3-D) Ni/TiO(2) nanowire network was successfully fabricated using a 3-D porous anodic alumina (PAA) template-assisted electrodeposition of Ni followed by TiO(2) coating using atomic layer deposition. Compared to the straight Ni/TiO(2) nanowire arrays fabricated using conventional PAA templates, the 3-D Ni/TiO(2) nanowire network shows higher areal discharging capacity. The areal capacity increases proportionally with the length of nanowires. With a stable Ni/TiO(2) nanowire network structure, 100% capacity is retained after 600 cycles. This work paves the way to build reliable 3-D nanostructured electrodes for high areal capacity microbatteries.
基于纳米线的微型电池的面积容量可以通过增加纳米线的长度来提高。然而,高纵横比纳米线阵列的团聚会极大地降低纳米线在锂离子(Li-ion)电池应用中的性能。在这项工作中,使用 3-D 多孔阳极氧化铝(PAA)模板辅助电沉积 Ni 随后使用原子层沉积进行 TiO(2) 涂层,成功制备了三维(3-D)Ni/TiO(2)纳米线网络。与使用传统 PAA 模板制备的直纳米线阵列相比,3-D Ni/TiO(2)纳米线网络显示出更高的面积放电容量。面积容量与纳米线的长度成正比增加。在稳定的 Ni/TiO(2)纳米线网络结构下,经过 600 次循环后仍保留 100%的容量。这项工作为构建用于高面积容量微型电池的可靠 3-D 纳米结构电极铺平了道路。