Related Experiment Video
Updated: Dec 23, 2025

Evaluating the Electrochemical Properties of Supercapacitors using the Three-Electrode System
Published on: January 7, 2022
MOF-deviated zinc-nickel-cobalt ZIF-67 electrode material for high-performance symmetrical coin-shaped
Ejikeme Raphael Ezeigwe1, Li Dong1, Jianyi Wang2
1Institute for Sustainable Energy, College of Sciences, Shanghai University, Shanghai 200444, China; Zhaoqing Leoch Battery Technology Co. Ltd., 518000 Guangdong, China.
Abstract:
In this study, an MOF-derived ternary zinc-nickel-cobalt hollow polyhedron (ZNC ZIF-67) is synthesized via a facile and scalable templated method and evaluated as the electrode material for supercapacitors. Several physical methods, including XRD, EDX, SEM, TEM, and HR-TEM, are used to characterize the morphology, structure, and composition of this material, and electrochemical methods, such as cyclic voltammetry, galvanostatic charge and discharge, and electrochemical impedance spectroscopy, are also used to evaluate the electrode performance. The porous polyhedral structure of ZNC ZIF-67 with different shell compositions consisting of interconnected nanoparticles is found to play an important role in increasing the specific surface area of the material. This electrode material with interconnected nanoparticles shows an improved capacitance, giving a specific capacitance of 247F/g at a current density of 0.1 A/g when symmetrically assembled into a coin-shaped supercapacitor. The assembled supercapacitor with this material also demonstrates an outstanding rate performance and an excellent cycling stability with an average coulombic efficiency of 99% over 5000 cycles and a high energy density of 27.94 Wh/kg at a power density of 1.3 kW/kg. It is believed that this work could provide a simple strategy to fabricate nanostructured MOF-derived ternary metal oxide-based electrodes for high-performance and practical energy storage devices, including supercapacitors.
More Related Videos
Related Concept Videos
MOS Capacitor
The metal gate is typically made from highly conductive materials such as aluminum or polysilicon. Beneath the metal gate lies a thin layer of...
Capacitor With A Dielectric
Dielectrics are non-conducting materials with no free or loosely bound electrons. When a dielectric is...
Dielectric Polarization in a Capacitor

