超级电容器
材料科学
功率密度
异质结
储能
电化学
复合数
纳米技术
电化学储能
电极
非阻塞I/O
热液循环
能量密度
高能
能量转换
光电子学
电势能
水热合成
作者
Mengke Zhang,Qixun Xia,Lijun Si,Tian Han,Hailong Liu,Xinran Li,Libo Wang,Qianku Hu,Aiguo Zhou
标识
DOI:10.1021/acsaem.5c03340
摘要
Among emerging materials, MXene has gained particular interest due to its remarkable two-dimensional structure, high electrical conductivity, chemical stability, and high theoretical specific capacitance. However, its tendency to self-stack limits its performance in energy storage applications. In this study, we explore the potential of V 2 CT x MXene as a high-performance electrode material by functionalizing it with NiO through an innovative in situ growth strategy. V 2 CT x MXene was synthesized using acid etching, and a NiO/V 2 CT x composite was successfully prepared via hydrothermal synthesis and annealing. Electrochemical measurements of the NiO/V 2 CT x //AC asymmetric supercapacitor yielded a high energy density of 25.78 Wh kg –1 at a power density of 160 W kg –1 . After 10,000 cycling, the material retains a stable efficiency of 99.24%, and specific capacity still remains at 70% of the original demonstrating excellent long-term durability. NiO-functionalized V 2 CT x MXene exhibits enhanced electrochemical performance and cyclic stability, demonstrating great potential for advanced energy storage applications.
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