Related Experiment Video
Updated: Sep 15, 2025

Author Spotlight: Magnetometric Characterization of Intermediates in the Solid-State Electrochemistry of Redox-Active Metal-Organic Frameworks
Published on: June 9, 2023
Optimizing hybrid supercapacitor performance through synergistic integration of metal-organic frameworks and metal
Waqas Shoukat1, M Z Iqbal2, Imran Murtaza1
1Flexible Electronics Laboratory (FEL), Department of Physics, International Islamic University Islamabad 44000 Pakistan waqas.phdphy116@iiu.edu.pk imran.murtaza@iiu.edu.pk.
Abstract:
Metal-organic frameworks (MOFs) offer significant advantages for energy storage, including high surface area, customizable porosity, and abundant active sites. We utilized these properties to synthesize a novel barium-MOF and neodymium oxide composite (Ba-MOF/Nd2O3) as an electrode material for hybrid supercapacitors. Incorporating Nd2O3-a lanthanide-series rare-earth metal oxide-enhances the composite's electrochemical properties, particularly in terms of specific capacity, energy density, power density, and cyclic stability. In a half-cell setup, the composite provided a remarkable specific capacity of 718 C g-1 at the lowest current density (1.9 A g-1). For further investigation, a real device was functionalized, which provided better energy density of 96 Wh kg-1 with a maximum power density of 9350 W kg-1. The device exhibited a rate capability of 96% and capacity retention of 92%, even after the 5000 charge-discharge process. Furthermore, semi-empirical models were employed to assess the capacitive and diffusive contributions.

