Ali Zafar Zahid, Weisser Radim, Abbas Ghulam, Silhavik Martin, Kumar Prabhat, Červenka Jiří
Department of Thin Films and Nanostructures, FZU - Institute of Physics of the Czech Academy of Sciences, Cukrovarnická 10/112, Prague, 162 00, Czech Republic.
IMDEA Materials Institute, Getafe, 28906, Madrid, Spain.
ChemSusChem. 2025 Mar 15;18(6):e202401681. doi: 10.1002/cssc.202401681. Epub 2024 Nov 15.
Supercapacitors are crucial in renewable energy integration, satellite power systems, and rapid power delivery applications for mitigating voltage fluctuations and storing excess energy. Aqueous electrolytes offer a promising solution for low-cost and safe supercapacitors. However, they still face limitations in cycle life and wide-temperature range performance. Here, we present a symmetric supercapacitor utilizing activated carbon electrodes and a "water-in-salt" electrolyte (WiSE) based on lithium perchlorate. The WiSE electrolyte exhibits an expanded electrochemical stability window, endowing the aqueous supercapacitor with remarkable stability and long cycle life of over 100,000 cycles at 500 mA g with more than 91 % capacity retention. Moreover, the supercapacitor demonstrates good rate capability and wide temperature operability ranging from -20 to 80 °C. The use of high concentrations of salt in the aqueous electrolyte contributes not only to the enhancement of supercapacitor performance and cycle life but also to the temperature stability range, enabling all-season operability.
超级电容器在可再生能源整合、卫星电力系统以及用于减轻电压波动和存储多余能量的快速电力输送应用中至关重要。水性电解质为低成本、安全的超级电容器提供了一种有前景的解决方案。然而,它们在循环寿命和宽温度范围性能方面仍面临限制。在此,我们展示了一种基于高氯酸锂的利用活性炭电极和“盐包水”电解质(WiSE)的对称超级电容器。该WiSE电解质展现出扩展的电化学稳定窗口,赋予水性超级电容器卓越的稳定性以及在500 mA g下超过100,000次循环的长循环寿命,容量保持率超过91%。此外,该超级电容器展示出良好的倍率性能以及在-20至80°C范围内广泛的温度可操作性。在水性电解质中使用高浓度盐不仅有助于提升超级电容器的性能和循环寿命,还有助于扩大温度稳定范围,实现全季节可操作性。