Qian Yu, Sun Xinye, Deng Xinyue, Yin Shiqin, Zhang Tao
School of Chemical Engineering, Sichuan University Chengdu 610065 China
RSC Adv. 2025 Mar 3;15(9):6774-6782. doi: 10.1039/d4ra09119a. eCollection 2025 Feb 26.
Carbon composite is one of the most competitive electrode materials for supercapacitor, and improving its energy density remains a significant challenge. The copper oxide/carbon composites with high specific surface area were prepared from the cellulose aerogel loaded with copper salts. The copper oxide/carbon composite electrode material, deriving from copper sulfate, reached a specific capacitance of 1001 F g at 2 A g, with an energy density of 139.0 W h kg. After 500 cycles, the capacitance retention rate is 98.06%. An asymmetric supercapacitor was assembled using this material as positive electrode material, activated carbon as negative electrode material, and 3.0 M KOH as electrolyte. It exhibited good reversible capacity and low voltage drop loss within a voltage window of 0-1.2 V, and its specific capacitance and energy density achieved 125 F g and 6.3 W h kg at a current density of 0.1 A g, respectively.
碳复合材料是超级电容器中最具竞争力的电极材料之一,提高其能量密度仍然是一项重大挑战。通过负载铜盐的纤维素气凝胶制备了具有高比表面积的氧化铜/碳复合材料。由硫酸铜衍生而来的氧化铜/碳复合电极材料在2 A g时的比电容达到1001 F g,能量密度为139.0 W h kg。经过500次循环后,电容保持率为98.06%。以该材料为正极材料、活性炭为负极材料、3.0 M KOH为电解质组装了不对称超级电容器。在0-1.2 V的电压窗口内,它表现出良好的可逆容量和低电压降损失,在电流密度为0.1 A g时,其比电容和能量密度分别达到125 F g和6.3 W h kg。