Related Experiment Video
Updated: Sep 19, 2025

Fabrication of Ti3C2 MXene Microelectrode Arrays for In Vivo Neural Recording
Published on: February 12, 2020
Advanced Pseudocapacitive Performances of a Ti3C2Tx-ZnOHF/ZnO Nanocomposite for Energy Storage Applications
Gisella M Di Mari1,2, Chengning Yao3, Tianhao Lan4
1Department of Physics and Astronomy, University of Catania,"Ettore Majorana", via S. Sofia 64, 95123, Catania, Italy.
Abstract:
The growing demand for efficient and high-performance energy storage systems is driving the exploration of novel materials and composites. Traditional electrode materials often face limitations in terms of energy and power densities. This article demonstrates a novel spray-coated cathode electrode system composed of Ti3C2Tx MXene and zinc hydroxy fluoride/zinc oxide nanostars for energy storage applications in a neutral pH electrolyte (1M Na2SO4), thus avoiding corrosion problems related to water splitting reactions. Optimized Ti3C2Tx-nanostar electrodes exhibit superior specific capacitance, achieving 236 F g-1 at 5 mV s-1 in cyclic voltammetry and 139 F g-1 at 5 mV s-1 in galvanostatic charge-discharge measurements, which is superior to pure Ti3C2Tx (115 F g-1 at 0.5 A g-1) and pure nanostar (108 F g-1 at 0.5 F g-1) electrodes, used as reference. Additionally, an asymmetric Ti3C2Tx||Ti3C2Tx-nanostars supercapacitor device achieves a specific capacitance of 147 F g-1 at 0.5 A g-1, an energy density Ed ≈ 46 W h kg-1 at a power density Pd ≈ 875 W kg-1, and the highest Pd ≈ 16 650 W kg-1 at Ed ≈ 14 W h kg-1. These findings demonstrate that zinc oxide nanostars combined with delaminated Ti3C2Tx MXene hold a significant promise for efficient energy storage applications, leveraging the synergy between double-layer capacitance and pseudocapacitive effects.
Related Concept Videos
Energy Stored in Capacitors
By integrating the equation that relates voltage and current in a capacitor, one can derive an equation for the voltage across the capacitor at any given time. This equation is crucial in understanding and predicting the behavior of capacitors in...
Energy Stored in a Capacitor
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...
Energy Stored in a Capacitor: Problem Solving
Capacitor-discharge ignition is a type of ignition system commonly found in small engines where the energy released from a capacitor ignites an induction coil that, in turn, fires the spark plug.
To calculate the energy stored in a capacitor of...

