MXene and polyaniline coated 3D-printed carbon electrode for asymmetric supercapacitor

dc.contributor.authorMappoli, Shidhincs
dc.contributor.authorGhosh, Kalyancs
dc.contributor.authorPumera, Martincs
dc.coverage.issue1cs
dc.coverage.volume19cs
dc.date.issued2024-12-31cs
dc.description.abstract3D printing has emerged as an attractive manufacturing technique in supercapacitor electrodes owing to the precise and customisable fabrication of complex electrode designs, enhancing the performance and efficiency of the device. Despite the advantages, 3D-printed electrodes are limited by their low conductivity and electrochemical properties, predominantly due to the lack of availability of suitable conductive materials. To address this limitation, we modified the 3D-printed nanocarbon (3D-PnC) electrode by activation and surface deposition of Ti3C2Tx MXene. A solid-state asymmetric supercapacitor was fabricated by using 3D-PnC/Ti3C2Tx as the negative electrode and polyaniline (PANI) electrodeposited 3D-printed nanocarbon electrode (3D-PnC@PANI) as the positive electrode. The fabricated symmetric supercapacitor exhibits enhancement in overall voltage window, areal capacitance and energy density. The successful operation of the supercapacitor was demonstrated by the illumination of the red light-emitting diodes. Furthermore, this research opens the possibility of utilising MXene-modified 3D-printed electrodes for various electrochemical applications and devices.en
dc.description.abstract3D printing has emerged as an attractive manufacturing technique in supercapacitor electrodes owing to the precise and customisable fabrication of complex electrode designs, enhancing the performance and efficiency of the device. Despite the advantages, 3D-printed electrodes are limited by their low conductivity and electrochemical properties, predominantly due to the lack of availability of suitable conductive materials. To address this limitation, we modified the 3D-printed nanocarbon (3D-PnC) electrode by activation and surface deposition of Ti3C2Tx MXene. A solid-state asymmetric supercapacitor was fabricated by using 3D-PnC/Ti3C2Tx as the negative electrode and polyaniline (PANI) electrodeposited 3D-printed nanocarbon electrode (3D-PnC@PANI) as the positive electrode. The fabricated symmetric supercapacitor exhibits enhancement in overall voltage window, areal capacitance and energy density. The successful operation of the supercapacitor was demonstrated by the illumination of the red light-emitting diodes. Furthermore, this research opens the possibility of utilising MXene-modified 3D-printed electrodes for various electrochemical applications and devices.en
dc.formattextcs
dc.format.extent12cs
dc.format.mimetypeapplication/pdfcs
dc.identifier.citationVirtual and Physical Prototyping. 2024, vol. 19, issue 1, 12 p.en
dc.identifier.doi10.1080/17452759.2024.2361139cs
dc.identifier.issn1745-2759cs
dc.identifier.orcid0000-0001-8073-3949cs
dc.identifier.orcid0000-0001-6840-6590cs
dc.identifier.orcid0000-0001-5846-2951cs
dc.identifier.other189347cs
dc.identifier.researcheridF-2724-2010cs
dc.identifier.urihttp://hdl.handle.net/11012/251580
dc.language.isoencs
dc.publisherTAYLOR & FRANCIS LTDcs
dc.relation.ispartofVirtual and Physical Prototypingcs
dc.relation.urihttps://www.tandfonline.com/doi/full/10.1080/17452759.2024.2361139cs
dc.rightsCreative Commons Attribution 4.0 Internationalcs
dc.rights.accessopenAccesscs
dc.rights.sherpahttp://www.sherpa.ac.uk/romeo/issn/1745-2759/cs
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/cs
dc.subjectSolid-state supercapacitorsen
dc.subjectenergy storageen
dc.subjectMXeneen
dc.subjectPANIen
dc.subjectfused deposition modellingen
dc.subjectSolid-state supercapacitors
dc.subjectenergy storage
dc.subjectMXene
dc.subjectPANI
dc.subjectfused deposition modelling
dc.titleMXene and polyaniline coated 3D-printed carbon electrode for asymmetric supercapacitoren
dc.title.alternativeMXene and polyaniline coated 3D-printed carbon electrode for asymmetric supercapacitoren
dc.type.driverarticleen
dc.type.statusPeer-revieweden
dc.type.versionpublishedVersionen
sync.item.dbidVAV-189347en
sync.item.dbtypeVAVen
sync.item.insts2025.10.14 15:17:31en
sync.item.modts2025.10.14 10:21:05en
thesis.grantorVysoké učení technické v Brně. Středoevropský technologický institut VUT. Energie budoucnosti a inovacecs

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