Nanotechnology. 2014 Jan 24;25(3):035402. doi: 10.1088/0957-4484/25/3/035402.
Carbon nanotubes (CNTs) have received increasing attention as electrode materials for high-performance supercapacitors. We herein present a straightforward method to synthesize CNT films directly on carbon cloths as electrodes for all-solid-state flexible supercapacitors (AFSCs). The as-made highly conductive electrodes possess a three-dimensional (3D) network architecture for fast ion diffusion and good flexibility, leading to an AFSC with a specific capacitance of 106.1 F g−1, an areal capacitance of 38.75 mF cm−2, an ultralong cycle life of 100,000 times (capacitance retention: 99%), a good rate capability (can scan at 1000 mV s−1, at which the capacitance is still ~37.8% of that at 5 mV s−1), a high energy density (2.4 μW h cm−2) and a high power density (19 mW cm−2). Moreover, our AFSC maintains excellent electrochemical attributes even with serious shape deformation (bending, folding, etc), high mechanical pressure (63 kPa) and a wide temperature window (up to 100° C). After charging for only 5 s, three such AFSC devices connected in series can efficiently power a red round LED for 60 s. Our work could pave the way for the design of practical AFSCs, which are expected to be used for various flexible portable/wearable electronic devices in the future.
碳纳米管(CNTs)作为高性能超级电容器的电极材料受到了越来越多的关注。本文提出了一种直接在碳布上合成 CNT 薄膜作为全固态柔性超级电容器(AFSCs)电极的简便方法。所制备的高导电性电极具有三维(3D)网络结构,有利于离子快速扩散和良好的柔韧性,使得 AFSC 的比电容为 106.1 F g−1,面电容为 38.75 mF cm−2,超长循环寿命达到 100,000 次(电容保持率:99%),倍率性能良好(可在 1000 mV s−1 下扫描,此时的电容仍为 5 mV s−1 下的约 37.8%),能量密度高(2.4 μW h cm−2),功率密度高(19 mW cm−2)。此外,即使在严重的形状变形(弯曲、折叠等)、高机械压力(63 kPa)和宽温度窗口(高达 100° C)下,我们的 AFSC 仍保持优异的电化学性能。仅需充电 5 s,三个串联的这种 AFSC 装置就可以为一个红色圆形 LED 供电 60 s。我们的工作为实用型 AFSCs 的设计铺平了道路,有望在未来应用于各种灵活的便携式/可穿戴电子设备。