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Highly Flexible, Freestanding Supercapacitor Electrode with Enhanced Performance Obtained by Hybridizing Polypyrrole Chains with MXene

  • Minshen Zhu
  • , Yang Huang
  • , Qihuang Deng
  • , Jie Zhou
  • , Zengxia Pei
  • , Qi Xue
  • , Yan Huang
  • , Zifeng Wang
  • , Hongfei Li
  • , Qing Huang
  • , Chunyi Zhi*
  • *Corresponding author for this work
  • City University of Hong Kong
  • Chinese Academy of Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

Though polypyrrole (PPy) is widely used in flexible supercapacitors owing to its high electrochemical activity and intrinsic flexibility, limited capacitance and cycling stability of freestanding PPy films greatly reduce their practicality in real-world applications. Herein, we report a new approach to enhance PPy's capacitance and cycling stability by forming a freestanding and conductive hybrid film through intercalating PPy into layered Ti3C2 (l-Ti3C2, a MXene material). The capacitance increases from 150 (300) to 203 mF cm−2 (406 F cm−3). Moreover, almost 100% capacitance retention is achieved, even after 20 000 charging/discharging cycles. The analyses reveal that l-Ti3C2 effectively prevents dense PPy stacking, benefiting the electrolyte infiltration. Furthermore, strong bonds, formed between the PPy backbones and surfaces of l-Ti3C2, not only ensure good conductivity and provide precise pathways for charge-carrier transport but also improve the structural stability of PPy backbones. The freestanding PPy/l-Ti3C2 film is further used to fabricate an ultra-thin all-solid-state supercapacitor, which shows an excellent capacitance (35 mF cm−2), stable performance at any bending state and during 10 000 charging/discharging cycles. This novel strategy provides a new way to design conductive polymer-based freestanding flexible electrodes with greatly improved electrochemical performances.

Original languageEnglish
Article number1600969
JournalAdvanced Energy Materials
Volume6
Issue number21
DOIs
StatePublished - 9 Nov 2016
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • MXene
  • freestanding polymer film
  • high capacitance supercapacitors
  • polypyrrole
  • ultra-stable cycling ability

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