Tsinghua-Foxconn Nanotechnology Research Center and Department of Physics, Tsinghua University, Beijing 100084, People's Republic of China.
Nano Lett. 2010 Oct 13;10(10):4025-31. doi: 10.1021/nl1019672.
In recent years, much effort have been dedicated to achieve thin, lightweight and even flexible energy-storage devices for wearable electronics. Here we demonstrate a novel kind of ultrathin all-solid-state supercapacitor configuration with an extremely simple process using two slightly separated polyaniline-based electrodes well solidified in the H(2)SO(4)-polyvinyl alcohol gel electrolyte. The thickness of the entire device is much comparable to that of a piece of commercial standard A4 print paper. Under its highly flexible (twisting) state, the integrate device shows a high specific capacitance of 350 F/g for the electrode materials, well cycle stability after 1000 cycles and a leakage current of as small as 17.2 μA. Furthermore, due to its polymer-based component structure, it has a specific capacitance of as high as 31.4 F/g for the entire device, which is more than 6 times that of current high-level commercial supercapacitor products. These highly flexible and all-solid-state paperlike polymer supercapacitors may bring new design opportunities of device configuration for energy-storage devices in the future wearable electronic area.
近年来,人们致力于开发用于可穿戴电子设备的轻薄、甚至灵活的储能器件。在这里,我们展示了一种新型的超薄全固态超级电容器结构,其使用略微分离的两个聚苯胺基电极,通过极其简单的工艺在 H(2)SO(4)-聚乙烯醇凝胶电解质中完全固化。整个器件的厚度与一张商业标准的 A4 打印纸相当。在高度灵活(扭曲)的状态下,集成器件的电极材料具有 350 F/g 的高比电容,经过 1000 次循环后具有良好的循环稳定性,漏电流低至 17.2 μA。此外,由于其聚合物基组件结构,整个器件的比电容高达 31.4 F/g,是当前高水平商业超级电容器产品的 6 倍以上。这些高度灵活和全固态的纸状聚合物超级电容器可能为未来可穿戴电子领域的储能器件带来新的设计机会。