Issue 33, 2022

Excellent rate capability supercapacitor based on a free-standing PEDOT:PSS film enabled by the hydrothermal method

Abstract

For the first time, herein, the hydrothermal method with H2SO4 as the solvent is introduced to enhance the rate capability of free-standing pristine PEDOT:PSS films. The film with a record conductivity of 3188 S cm−1 displays a rectangular characteristic at an ultrahigh scan rate of 1300 mV s−1 and a stable specific capacitance of 110 F cm−3 from 0.1 to 100 A cm−3, with a capacitance retention of up to 94.8%. The flexible supercapacitor based on the films delivers a comparable energy density of 2.96 mW h cm−3 even at a high power density of 36 685 mW cm−3. This study provides an effective method to prepare PEDOT:PSS films with outstanding electrochemical properties and potentially expand its applications in flexible devices.

Graphical abstract: Excellent rate capability supercapacitor based on a free-standing PEDOT:PSS film enabled by the hydrothermal method

Supplementary files

Article information

Article type
Communication
Submitted
22 Jan 2022
Accepted
18 Mar 2022
First published
18 Mar 2022

Chem. Commun., 2022,58, 5088-5091

Excellent rate capability supercapacitor based on a free-standing PEDOT:PSS film enabled by the hydrothermal method

Z. Su, Y. Jin, Y. Xiao, H. Zheng, Z. Yang, H. Wang and Z. Li, Chem. Commun., 2022, 58, 5088 DOI: 10.1039/D2CC00427E

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