Liu Cihui, Liu Xing, Xuan Hongyun, Ren Jiaoyu, Ge Liqin
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Sci Rep. 2015 Dec 22;5:18419. doi: 10.1038/srep18419.
To meet the pressing demands for portable and flexible equipment in contemporary society, developing flexible, lightweight, and sustainable supercapacitor systems with large power densities, long cycle life, and ease of strongly required. However, estimating the state-of-charge of existing supercapacitors is difficult, and thus their service life is limited. In this study, we fabricate a flexible color indicative supercapacitor device with mesoporous polyaniline (mPANI)/Poly(N-Isopropyl acrylamide-Graphene Oxide-Acrylic Acid) (P(NiPPAm-GO-AA)) one dimensional photonic crystals (1DPCs) as the electrode material through a low-cost, eco-friendly, and scalable fabrication process. We found that the state-of-charge could be monitored by the structural color oscillation due to the change in the photonic band gap position of the 1DPCs. The flexible 1DPCs supercapacitor is thin at 3 mm and exhibits good specific capacitance of 22.6 F g(-1) with retention of 91.1% after 3,000 cycles. This study shows the application of the 1DPCs supercapacitor as a visual ultrathin power source. The technology may find many applications in future wearable electronics.
为了满足当代社会对便携式和灵活设备的迫切需求,开发具有高功率密度、长循环寿命且易于制造的柔性、轻质和可持续的超级电容器系统至关重要。然而,现有超级电容器的充电状态难以估计,因此其使用寿命有限。在本研究中,我们通过低成本、环保且可扩展的制造工艺,制备了一种以介孔聚苯胺(mPANI)/聚(N-异丙基丙烯酰胺-氧化石墨烯-丙烯酸)(P(NiPPAm-GO-AA))一维光子晶体(1DPCs)作为电极材料的柔性颜色指示超级电容器器件。我们发现,由于1DPCs光子带隙位置的变化,充电状态可以通过结构颜色振荡来监测。这种柔性1DPCs超级电容器厚度仅为3毫米,具有22.6 F g(-1)的良好比电容,在3000次循环后电容保持率为91.1%。本研究展示了1DPCs超级电容器作为可视化超薄电源的应用。该技术未来可能在可穿戴电子设备中有诸多应用。