He Weikang, Li Jingjing, Zhang Yuanyuan, Yang Juan, Zeng Ting, Yang Nianjun
School of Chemistry and Environmental Engineering, Key Laboratory for Green Chemical Process of Ministry of Education, Hubei Key Lab of Novel Reactor and Green Chemical Technology, Wuhan Institute of Technology, Wuhan, 430073, China.
Department of Chemistry & IMO-IMOMEC, Hasselt University, 3590, Diepenbeek, Belgium.
Small Methods. 2025 Feb;9(2):e2301167. doi: 10.1002/smtd.202301167. Epub 2023 Nov 27.
A supercapacitor features high power density and long cycling life. However, its energy density is low. To ensemble a supercapacitor with high power- and energy-densities, the applied capacitor electrodes play the key roles. Herein, a high-performance capacitive electrode is designed and grown on a flexible carbon cloth (CC) substrate via a hydrothermal reaction and a subsequent ion exchange sulfuration process. It has a 3D heterostructure, consisting of sulfur-doped NiMn-layered double hydroxide (LDH) nanosheets (NMLS) and sulfur-doped NiCo-LDH nanowires (NCLS). The electrode with sheet-shaped NMLS and wire-shaped NCLS on their top (NMLS@NCLS/CC) increases the available surface area, providing more pseudocapacitive sites. It exhibits a gravimetric capacity of 555.2 C g at a current density of 1 A g, the retention rate of 75.1% when the current density reaches up to 20 A g, as well as superior cyclic stability. The assembled asymmetric supercapacitor that is composed of a NMLS@NCLS/CC positive electrode and a sulfurized activated carbon negative electrode presents a maximum energy density of 24.2 Wh kg and a maximum power density of 16000 W kg. In this study, a facile strategy for designing hierarchical LDH materials is demonstrated as well as their applications in advanced energy storage systems.
超级电容器具有高功率密度和长循环寿命。然而,其能量密度较低。为了集成具有高功率和能量密度的超级电容器,所应用的电容器电极起着关键作用。在此,通过水热反应和随后的离子交换硫化过程,在柔性碳布(CC)基底上设计并生长了一种高性能电容电极。它具有三维异质结构,由硫掺杂的NiMn层状双氢氧化物(LDH)纳米片(NMLS)和硫掺杂的NiCo-LDH纳米线(NCLS)组成。顶部具有片状NMLS和线状NCLS的电极(NMLS@NCLS/CC)增加了可用表面积,提供了更多的赝电容位点。在1 A g的电流密度下,其比容量为555.2 C g,当电流密度达到20 A g时,保留率为75.1%,并且具有优异的循环稳定性。由NMLS@NCLS/CC正极和硫化活性炭负极组成的不对称超级电容器呈现出24.2 Wh kg的最大能量密度和16000 W kg的最大功率密度。在本研究中,展示了一种设计分级LDH材料的简便策略及其在先进储能系统中的应用。