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  4. Comparison between atmospheric-pressure-plasma-jet-processed and furnace-calcined rGO-MnOx nanocomposite electrodes for gel-electrolyte supercapacitors
 
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Comparison between atmospheric-pressure-plasma-jet-processed and furnace-calcined rGO-MnOx nanocomposite electrodes for gel-electrolyte supercapacitors

Journal
Journal of Alloys and Compounds
Journal Volume
911
Date Issued
2022
Author(s)
Lai J.-Y
JERRY CHENG-CHE HSU  
JIAN-ZHANG CHEN  
DOI
10.1016/j.jallcom.2022.165006
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85129489018&doi=10.1016%2fj.jallcom.2022.165006&partnerID=40&md5=6de8073e754999ab719e2ed9dbf26b59
https://scholars.lib.ntu.edu.tw/handle/123456789/625326
Abstract
Reduced graphene oxide (rGO)-Mn(NO3)2·4H2O pastes were screen-printed on a carbon cloth substrate and then calcined using a nitrogen atmospheric-pressure-plasma-jet (APPJ) and/or tube furnace to convert it into rGO-MnOx. The rGO-MnOx electrodes were then used in a PVA/H2SO4 gel-electrolyte supercapacitor (SC). The SCs were characterized by cycle voltammetry (CV) and galvanostatic charging/discharging (GCD). The results reveal better performance of the APPJ-processed SCs in comparison with furnace-processed ones under the same processing temperature, possibly owing to the synergetic effect of heat and reactive nitrogen plasma species. The rGO-MnOx SC is also superior to the rGO-SnOx SC reported in our previous study processed under similar APPJ processing. The rGO-MnOx SC processed by APPJ at 620 °C for 8 min exhibits the best areal capacitance of 57.01 mF/cm2 as evaluated by GCD with a capacitance retention rate of 84.41% after a 10,000-cycle CV test. © 2022 Elsevier B.V.
Subjects
Atmospheric-pressure plasma; Manganese oxide; Rapid calcination; Reduced graphene oxide; Supercapacitor
Other Subjects
Atmospheric pressure; Calcination; Capacitance; Electric discharges; Graphene; Manganese oxide; Plasma jets; Processing; Solid electrolytes; Supercapacitor; Atmospheric pressure plasma jets; Atmospheric pressure plasmas; Charging/discharging; Cycle voltammetries; Galvanostatics; Gel electrolyte; Nanocomposite electrodes; Rapid calcination; Reduced graphene oxides; Screen-printed; Electrodes
Type
journal article

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