School of Chemical Engineering, Fuzhou University, Fuzhou 350108, China.
Qingyuan Innovation Laboratory, Quanzhou 362114, China.
Carbohydr Polym. 2023 Apr 15;306:120587. doi: 10.1016/j.carbpol.2023.120587. Epub 2023 Jan 16.
Hydrogel electrolytes have shown great promise in the field of flexible energy storage. However, the conventional hydrogel electrolytes have poor mechanical properties and are not recyclable. In addition, conventional hydrogel electrolytes cannot adapt to low and high temperature operating environments. In this study, starch/PVA/dimethyl sulfoxide/CaCl (SPDC) organohydrogel was prepared by the freezing-thawing method. Dimethyl sulfoxide (DMSO) and CaCl was introduced to enhance the mechanical properties and widen the working temperature range of the starch/PVA hydrogel. The SPDC organohydrogel had high strength, toughness and good recyclability. The SPDC organohydrogel and the recycled SPDC organohydrogel was used as the electrolyte to assemble the flexible supercapacitor with activated carbon as the electrode. The supercapacitor prepared by SPDC organohydrogel electrolyte exhibited high areal capacitance of 156.50 mF/cm at a current density of 1 mA/cm and high capacitance retention rate of 82.23 % after 8000 cycles of charging and discharging. The supercapacitor prepared by the recycled organohydrogel electrolyte exhibited a high capacitance retention rate of 97.58 %. In addition, the supercapacitor could withstand different angular bending shapes and had wide temperature adaptability from -20 °C to 80 °C. The work provided a new version for the development of "green" hydrogel electrolyte for all-solid-state supercapacitor.
水凝胶电解质在柔性储能领域显示出巨大的应用潜力。然而,传统的水凝胶电解质存在机械性能差、不可回收等缺点。此外,传统的水凝胶电解质无法适应低温和高温工作环境。在本研究中,采用冻融法制备了淀粉/PVA/二甲基亚砜/CaCl(SPDC)有机水凝胶。二甲基亚砜(DMSO)和 CaCl 的引入提高了淀粉/PVA 水凝胶的机械性能和工作温度范围。SPDC 有机水凝胶具有高强度、高韧性和良好的可回收性。将 SPDC 有机水凝胶和回收的 SPDC 有机水凝胶用作电解质,以活性炭为电极组装了柔性超级电容器。用 SPDC 有机水凝胶电解质制备的超级电容器在电流密度为 1 mA/cm 时具有高达 156.50 mF/cm 的面电容,经过 8000 次充放电循环后,电容保持率高达 82.23%。用回收的有机水凝胶电解质制备的超级电容器的电容保持率高达 97.58%。此外,该超级电容器能够承受不同的角度弯曲形状,并且具有从-20°C到 80°C的宽温度适应性。该工作为全固态超级电容器用“绿色”水凝胶电解质的开发提供了新的思路。