JOURNAL ARTICLE

Constructing MXene-PANI@MWCNTs heterojunction with high specific capacitance towards flexible micro-supercapacitor

Qiangqiang WangYong-Sheng FangMao‐Sheng Cao

Year: 2022 Journal:   Nanotechnology Vol: 33 (29)Pages: 295401-295401   Publisher: IOP Publishing

Abstract

Abstract Micro-supercapacitors (MSCs) are considered as the promising energy supply of miniaturized electronic devices. The electrode material, as one integral part, play a crucial role on the energy storage performance of MSCs. In our work, we constructed a heterojunction in MXene-PANI@MWCNTs (MPM) ternary composite, benefitting for the synergistic enhancement effect among MXene, polyaniline (PANI) and multiwall carbon nanotubes, an outstanding specific capacitance of 414 F g −1 (at 1 A g −1 ) has been achieved. MPM shows high capacitance retention at large current density (86.7%, at 10 A g −1 ) and long-term cycling stability of 90.4% for 10 000 cycles. Furthermore, we obtained MPM self-standing films, and constructed a flexible all-solid-state MSC based on the film electrode. A competitive charge storage capability of 30.2 mF cm −2 and long-term stability of 70.2% retention for 10 000 cycles was obtained in the MSC. Meanwhile, the MSC shows excellent flexibility, maintaining most capacitance under bending conditions. Moreover, using an integrated strategy, MSCs can obtain tunable voltages and currents that meet various practical requirements. All these results indicate that the MPM is an excellent charge storage material and will become a potential candidate for flexible energy-storage devices.

Keywords:
Supercapacitor Materials science Capacitance Energy storage Heterojunction Carbon nanotube Polyaniline Electrode Composite number Nanotechnology Optoelectronics Ternary operation Composite material Computer science Polymer

Metrics

25
Cited By
3.13
FWCI (Field Weighted Citation Impact)
61
Refs
0.81
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Supercapacitor Materials and Fabrication
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
MXene and MAX Phase Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering

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