| Literature DB >> 30209940 |
Chan Wang1,2, Kuan Hu1,2, Wenjian Li1,2, Huaying Wang1,2, Hu Li1,2,3, Yang Zou1,2, Chaochao Zhao1,2, Zhe Li1,2, Min Yu1,2, Puchuan Tan1,2, Zhou Li1,2,4.
Abstract
With the advantages of being lightweight, flexible, and wearable, wire-shaped supercapacitors have received tremendous attention in wearable and portable power sources in recent years. Considering the demands for large-scale applications, it is necessary to explore a facile and convenient preparation approach for wire-shaped supercapacitors. Herein, we reported a simple approach to fabricate wire-shaped electrodes by a dipping method, which possessed a nitric acid-activated graphite fiber core and an activated carbon-coating layer structure. Parallel and symmetric all-solid-state wire-shaped supercapacitors (PWSCs) based on the electrodes were fabricated. The as-fabricated PWSC showed high energy density (6.60 W h/kg, 8.08 mW h/cm, and 1 mV/s) and power density (253 mW/kg, 0.31 mW/cm, and 100 mV/s) and excellent flexibility. Furthermore, this wire-shaped supercapacitor may bring broader application prospects for energy storage devices in future wearable electronic areas.Entities:
Keywords: activated carbon; flexible; graphite fibers; wearable; wire-shaped supercapacitor
Year: 2018 PMID: 30209940 DOI: 10.1021/acsami.8b12279
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229