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Co-precipitation synthesis of pseudocapacitive λ-MnO2 for 2D MXene (Ti3C2Tx) based asymmetric flexible supercapacitor

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dc.contributor.authorVetrikarasan, B. Thanigai-
dc.contributor.authorNair, Abhijith R.-
dc.contributor.authorKarthick, T.-
dc.contributor.authorShinde, Surendra K.-
dc.contributor.authorKim, Dae-Young-
dc.contributor.authorSawant, Shilpa N.-
dc.contributor.authorJagadale, Ajay D.-
dc.date.accessioned2024-08-08T10:00:52Z-
dc.date.available2024-08-08T10:00:52Z-
dc.date.issued2023-11-
dc.identifier.issn2352-152X-
dc.identifier.issn2352-1538-
dc.identifier.urihttps://scholarworks.dongguk.edu/handle/sw.dongguk/21107-
dc.description.abstractThe rapid growth of wearable/portable electronics imposes a development of flexible, lightweight and highly efficient energy storage devices. In this work, we have synthesized A-MnO2 nanoplates through one step co-precipitation method and used for flexible asymmetric supercapacitor (SC). The structural, morphological and electrochemical properties of synthesized A-MnO2 were systematically investigated. The optical and electronic properties of A-MnO2 were studied using UV-vis spectroscopy and density functional theory (DFT) calculations. The pseudocapacitive A-MnO2 nanoplates-like electrode showed a maximum specific capacitance of 288.5 F g-1 at the scan rate of 5 mV s- 1. To check the practicability, symmetric (A-MnO2//A-MnO2) as well as asymmetric (A-MnO2//AC and A-MnO2//Ti3C2Tx MXene) SCs were fabricated and their performances were compared. The asymmetric A-MnO2//Ti3C2TxMXene SC demonstrated a maximum energy density of 15.5 Wh kg-1 at the power density 1100 W kg-1 along with 86.3 % of capacitive retention after 5000 cycles. Besides, to confirm the suit-ability of these electrodes for flexible energy storage, a flexible A-MnO2//Ti3C2Tx asymmetric SC was fabricated using PVA: Na2SO4 gel polymer electrolyte that operated in the potential window of 2 V and supplies high areal energy density of 39.9 & mu;Wh cm-2 at a power density of 8586 & mu;W cm-2. Therefore, the A-MnO2 prepared with a simple and scalable co-precipitation method may play a promising role in flexible energy storage.-
dc.format.extent12-
dc.language영어-
dc.language.isoENG-
dc.publisherELSEVIER-
dc.titleCo-precipitation synthesis of pseudocapacitive λ-MnO2 for 2D MXene (Ti3C2Tx) based asymmetric flexible supercapacitor-
dc.typeArticle-
dc.publisher.location네델란드-
dc.identifier.doi10.1016/j.est.2023.108403-
dc.identifier.scopusid2-s2.0-85165228498-
dc.identifier.wosid001044269200001-
dc.identifier.bibliographicCitationJournal of Energy Storage, v.72, pp 1 - 12-
dc.citation.titleJournal of Energy Storage-
dc.citation.volume72-
dc.citation.startPage1-
dc.citation.endPage12-
dc.type.docTypeArticle-
dc.description.isOpenAccessY-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-
dc.relation.journalResearchAreaEnergy & Fuels-
dc.relation.journalWebOfScienceCategoryEnergy & Fuels-
dc.subject.keywordPlusPERFORMANCE-
dc.subject.keywordAuthorA-MnO2-
dc.subject.keywordAuthorNanoplate-
dc.subject.keywordAuthorFlexible hybrid supercapacitor-
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