超级电容器
材料科学
层状双氢氧化物
电极
镍
氢氧化物
钴
电化学
碳纤维
化学工程
纳米技术
电容
电导率
复合材料
复合数
冶金
化学
工程类
物理化学
作者
Keqi Qu,Manhui Chen,Weicong Wang,Shuai Yang,Songjie Jing,Sitong Guo,Jingyang Tian,Houjuan Qi,Zhanhua Huang
标识
DOI:10.1016/j.jcis.2022.02.110
摘要
Layered double hydroxides (LDHs) often require the use of carbon materials to improve their stability, conductivity, and specific surface area to accommodate new directions in the development of high-performance energy storage materials. Herein, 2D nickel cobalt layered double hydroxide (NCLDH) nanosheets are regulated to form 3D flower-like spheres by fungus bran-derived carbon dots (CDs) via an in situ growth method. The prepared sample (CDs/NCLDH) shows abundant accessible active sites and favorable electrical conductivity, which is aided by strong interactions between CDs and NCLDH. The optimized CDs/NCLDH exhibits significantly enhanced electrochemical performances, including ultrahigh specific capacitance (2100F g-1 at 1 A g-1) and a great rate capability, which are two times higher than those of the NCLDH electrode. Additionally, the asymmetric supercapacitor device assembled with the CDs/NCLDH positive electrode and the fungus bran-derived activated carbon (FBC) negative electrode achieves a superior energy density of 52.5 Wh kg-1 at an ultrahigh powder density of 750 W kg-1. With their simple synthesis method and excellent electrochemical performance, the role of the CDs provides new insights for the development of LDHs with improved performance.
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