Electrochemical Improvement of the MWCNT/Al Electrodes for Supercapacitors
Электрохимическое улучшение характеристик электродов MWCNT/Al для суперконденсаторов
2021-12-10
SCID: 54.1/9fjatrgh
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MWCNT/Al electrodescyclic voltammetryelectrochemical oxidationmultiwall carbon nanotubessupercapacitors
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Abstract (AI)
An original technique of chemical deposition (CVD) by catalytic pyrolysis of ethanol vapor was used to directly grow multiwall carbon nanotubes (MWCNTs) layers on aluminum foil. The grown nanotubes had excellent adhesion and direct electrical contact to the aluminum substrate. This material was perfect for use in electrochemical supercapacitors. In this work, the possibility of a significant increase in the specific capacity of MWCNTs by simple electrochemical oxidation was investigated. The optimal conditions for improving the characteristics of the MWCNT/Al electrodes were found. Electrochemical treatment of MWCNT/Al electrodes in a 0.005 M Na2SO4 solution at a potential of 4–5 V for 20–30 min increased the specific capacity of MWCNTs from 30 F/g to 140 F/g. The properties of modified nanotubes were investigated by X-ray photoelectron spectroscopy, cyclic voltammetry (CV), and impedance spectroscopy. A significant increase in the concentration of oxygen-containing functional groups on the surface of MWCNTs was found as a result of electrochemical oxidation. The modified MWCNT/Al electrodes maintained excellent stability to multiple charge–discharge cycles. After 20,000 CVs, the capacity loss was less than 5%. Thus, the results obtained significantly expanded the possibilities of using MWCNT/Al composite materials obtained by the method of direct deposition of carbon nanotubes on aluminum foil as electrodes for supercapacitors.
Key Findings
1
Direct CVD growth of MWCNT layers on aluminum foil produced electrodes with excellent nanotube adhesion and direct electrical contact.
2
Electrochemical oxidation in 0.005 M Na2SO4 at 4–5 V for 20–30 minutes increased MWCNT specific capacity from 30 F/g to 140 F/g.
3
Electrochemically modified MWCNT/Al composites show expanded potential as supercapacitor electrodes.
4
Modified MWCNT/Al electrodes retained excellent cycling stability, losing less than 5% capacity after 20,000 cyclic voltammetry cycles.
5
The capacity enhancement was associated with a significant increase in oxygen-containing functional groups on the MWCNT surface.
Research Object
MWCNT/Al composite electrodes for electrochemical supercapacitors
Research Subject
The effect of electrochemical oxidation on the specific capacitance, surface oxygen functional groups, and cycling stability of MWCNT/Al electrodes
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2021-12-10
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