High–performance flexible supercapacitor based on carbon cloth through in–situ electrochemical exfoliation and re–deposition in neutral electrolyte

Carbon ◽  
2019 ◽  
Vol 153 ◽  
pp. 617-624 ◽  
Author(s):  
Zhenjun Dou ◽  
Zongyi Qin ◽  
Yueying Shen ◽  
Shuo Hu ◽  
Na Liu ◽  
...  
2018 ◽  
Vol 47 (43) ◽  
pp. 15416-15423 ◽  
Author(s):  
Qiuyue Gui ◽  
Jian Jiang ◽  
Yuanyuan Li ◽  
Jinping Liu

One-pot growth of Co(OH)2 nanowire arrays on in situ functionalized carbon cloth is reported for high-performance bendable pseudocapacitive electrodes.


Molecules ◽  
2020 ◽  
Vol 25 (14) ◽  
pp. 3218
Author(s):  
Guoqing Chen ◽  
Xuming Zhang ◽  
Yuanhang Ma ◽  
Hao Song ◽  
Chaoran Pi ◽  
...  

Structural design is often investigated to decrease the electron transfer depletion in/on the pseudocapacitive electrode for excellent capacitance performance. However, a simple way to improve the internal and external electron transfer efficiency is still challenging. In this work, we prepared a novel structure composed of cobalt (Co) nanoparticles (NPs) embedded MnO nanowires (NWs) with an N-doped carbon (NC) coating on carbon cloth (CC) by in situ thermal treatment of polydopamine (PDA) coated MnCo2O4.5 NWs in an inert atmosphere. The PDA coating was carbonized into the NC shell and simultaneously reduced the MnCo2O4.5 to Co NPs and MnO NWs, which greatly improve the surface and internal electron transfer ability on/in MnO boding well supercapacitive properties. The hybrid electrode shows a high specific capacitance of 747 F g−1 at 1 A g−1 and good cycling stability with 93% capacitance retention after 5,000 cycles at 10 A g−1. By coupling with vanadium nitride with an N-doped carbon coating (VN@NC) negative electrode, the asymmetric supercapacitor delivers a high energy density of 48.15 Wh kg−1 for a power density of 0.96 kW kg−1 as well as outstanding cycling performance with 82% retention after 2000 cycles at 10 A g−1. The electrode design and synthesis suggests large potential in the production of high-performance energy storage devices.


Sign in / Sign up

Export Citation Format

Share Document