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The Y3+ Donor-Doped CCTO (Ca0.95Y0.05Cu3Ti4O12) Dielectric Fillers for Electrical Output Enhancement of Flexible Triboelectric Nanogenerator

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dc.contributor.author Saichompoo, Kittipan -
dc.contributor.author Rattanawongwiboon, Thitirat -
dc.contributor.author Kingkam, Wilasinee -
dc.contributor.author Pakawanit, Phakkhananan -
dc.contributor.author Sukkha, Usa -
dc.contributor.author Onoda, Hiroaki -
dc.contributor.author Hajra, Sugato -
dc.contributor.author Khanapuram, Uday Kumar -
dc.contributor.author Charoonsuk, Thitirat -
dc.contributor.author Vittayakorn, Naratip -
dc.date.accessioned 2026-07-24T14:40:14Z -
dc.date.available 2026-07-24T14:40:14Z -
dc.date.created 2026-05-06 -
dc.date.issued 2026-06 -
dc.identifier.issn 1438-1656 -
dc.identifier.uri https://scholar.dgist.ac.kr/handle/20.500.11750/60512 -
dc.description.abstract The escalating wearable electronic devices with their flexible energy sources demand has rendered the imperative scientific challenge on the development of materials for the flexible triboelectric nanogenerators (F-TENG), one of advanced energy harvesting systems. Dielectric material optimization, the Y3+ donor-doped calcium copper titanate based on exactly stoichiometric Ca0.95Y0.05Cu3Ti4O12 (CCTYO), serves as a critical pathway in this work for achieving enhanced F-TENG via compositing with the polydimethylsiloxane (PDMS) polymer. The enhancement of electrical output has garnered substantial interest owing to its increased relative permittivity (epsilon(r)). The influence of the loaded CCTYO amounts on structure, morphologies, dielectric properties, and electrical output, including open-circuit voltage (V-OC), short-circuit current (I-SC) and power density for PDMS/CCTYO composites is investigated. As compared with loading undoped CCTO, the additional Y3+ can improve higher F-TENG output by increasing the along with maintaining the loss tangent (tan delta < 0.02) at optimized condition. The appropriate amounts of CCTYO 0.75 wt% make the PDMS/CCTYO F-TENG to achieve V-OC of similar to 76.4 V (8.5 V/cm(2)) and I-SC of similar to 130.0 mu A (14.4 mu A/cm(2)), which were higher than pristine PDMS for 2.7 and 4.3 times. The power density of 53 & micro;W/cm(2) is 8.9 times higher than that of 6.3 & micro;W/cm(2) from the pristine PDMS. This study also provides a COMSOL multiphysics simulation, bridging laboratory experiments, for quantifying the triboelectric capability of dielectric materials. -
dc.language English -
dc.publisher WILEY-V C H VERLAG GMBH -
dc.title The Y3+ Donor-Doped CCTO (Ca0.95Y0.05Cu3Ti4O12) Dielectric Fillers for Electrical Output Enhancement of Flexible Triboelectric Nanogenerator -
dc.type Article -
dc.identifier.doi 10.1002/adem.202503196 -
dc.identifier.wosid 001729452200001 -
dc.identifier.scopusid 001729452200001 -
dc.identifier.bibliographicCitation ADVANCED ENGINEERING MATERIALS, v.28, no.11 -
dc.description.isOpenAccess FALSE -
dc.subject.keywordAuthor calcium copper titanate -
dc.subject.keywordAuthor CCTO -
dc.subject.keywordAuthor donor-doped CCTO -
dc.subject.keywordAuthor flexible triboelectric nanogenerator -
dc.subject.keywordAuthor polydimethylsiloxane (PDMS) -
dc.subject.keywordPlus COMPOSITE FILM -
dc.subject.keywordPlus MICROSTRUCTURE -
dc.subject.keywordPlus CONSTANT -
dc.citation.number 11 -
dc.citation.title ADVANCED ENGINEERING MATERIALS -
dc.citation.volume 28 -
dc.description.journalRegisteredClass scie -
dc.description.journalRegisteredClass scopus -
dc.relation.journalResearchArea Materials Science -
dc.relation.journalWebOfScienceCategory Materials Science, Multidisciplinary -
dc.type.docType Article -
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