Publication:
Electrochemical mechanisms of activated carbon, α-MnO2 and composited activated carbon-α-MnO2 films in supercapacitor applications

dc.contributor.authorTagsin P.
dc.contributor.authorSuksangrat P.
dc.contributor.authorKlangtakai P.
dc.contributor.authorSrepusharawoot P.
dc.contributor.authorRuttanapun C.
dc.contributor.authorKumnorkaew P.
dc.contributor.authorPimanpang S.
dc.contributor.authorAmornkitbamrung V.
dc.date.accessioned2022-03-10T13:16:35Z
dc.date.available2022-03-10T13:16:35Z
dc.date.issued2021
dc.date.issuedBE2564
dc.description.abstractPure α-MnO2 and activated carbon-MnO2 (AC-MnO2) films coated on Ni foam by electrophoretic deposition were applied as a supercapacitor electrode. The specific capacitance of AC-MnO2 films (155.03 F g−1) surpasses those of the pure AC (110.62 F g−1) and pure MnO2 film in the 1 M NaOH electrolyte. EDX and XPS detect an increase in the Na content and the reduction of Mn4+ to Mn3+ on the discharged MnO2 electrode (at 0.0 V), whereas a decrease in the Na content and the oxidation of Mn3+ to Mn4+ were obtained on the charged MnO2 electrode (at 0.45 V). Computational simulation of the Na inserted α-MnO2 structure displays the connection of Na to O atoms and the increasing electron density on Mn atoms. EDX of the charged AC-MnO2 (at −1.0 V) film detects a rise in the Na and a fall in the O contents, but the discharged AC-MnO2 film (at 0.0 V) shows a decrease in Na and increase in O contents. The AC-MnO2 film could retain 82.29% of the initial specific capacity after 10,000 cycles. Four series-supercapacitor coin cell assembled from the AC-MnO2 anode and MnO2 cathode delivers a power density of 2.79 kW kg−1 and an energy density of 168.8 Wh kg−1. © 2021 Elsevier B.V.
dc.format.mimetypeapplication/pdf
dc.identifier.citationApplied Surface Science. Vol 570, No. (2021)
dc.identifier.doi10.1016/j.apsusc.2021.151056
dc.identifier.issn1694332
dc.identifier.other2-s2.0-85114519173
dc.identifier.urihttps://hdl.handle.net/20.500.14740/13584
dc.language.isoeng
dc.rights.holderมหาวิทยาลัยศรีนครินทรวิโรฒ
dc.subject.otherActivated carbon
dc.subject.otherCarbon films
dc.subject.otherDeposition
dc.subject.otherElectrodes
dc.subject.otherElectrolytes
dc.subject.otherElectrophoresis
dc.subject.otherFoams
dc.subject.otherSodium
dc.subject.otherSodium hydroxide
dc.subject.otherSupercapacitor
dc.subject.otherComposited
dc.subject.otherElectrochemical mechanisms
dc.subject.otherElectrophoretic
dc.subject.otherElectrophoretic depositions
dc.subject.otherMnO 2
dc.subject.otherMnO 2 films
dc.subject.otherNa content
dc.subject.otherNi foam
dc.subject.otherSupercapacitor application
dc.subject.otherSupercapacitor electrodes
dc.subject.otherManganese oxide
dc.titleElectrochemical mechanisms of activated carbon, α-MnO2 and composited activated carbon-α-MnO2 films in supercapacitor applications
dc.typeArticle
dspace.entity.typePublication
swu.datasource.scopushttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85114519173&doi=10.1016%2fj.apsusc.2021.151056&partnerID=40&md5=c68c907aafeddb588e66d99fcdb6c922

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