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Direct Fabrication of 3D Electrodes Based on Graphene and Conducting Polymers for Supercapacitor Applications (Adv. Funct. Mater. 4/2025)
Journal article   Peer reviewed

Direct Fabrication of 3D Electrodes Based on Graphene and Conducting Polymers for Supercapacitor Applications (Adv. Funct. Mater. 4/2025)

Musibau Francis Jimoh, Gray Scott Carson, Mackenzie Babetta Anderson, Maher F. El-Kady and Richard B. Kaner
Advanced functional materials, Vol.35(4), p.n/a
01/22/2025

Abstract

Graphene one‐step PEDOT nanofibers supercapacitor vapor phase polymerization
Conducting Polymers In article number 2405569, Maher F. El‐Kady, Richard B. Kaner, and co‐workers present a one‐step synthesis of high‐loading PEDOT polymer nanofibers on a graphene scaffold via vapor‐phase polymerization. This template‐free, scalable approach yields electrodes with enhanced conductivity and stability, addressing key challenges in PEDOT applications and paving the way for advanced energy storage devices.

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