Please use this identifier to cite or link to this item: http://hdl.handle.net/20.500.12323/8133
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dc.contributor.authorKarakulak, Ertugrul-
dc.contributor.authorParalı, Levent-
dc.contributor.authorKoç, Muhterem-
dc.contributor.authorTatardar, Farida-
dc.contributor.authorSarı, Ali-
dc.contributor.authorMevsim, Ersoy-
dc.contributor.authorFataliyeva, Valida-
dc.date.accessioned2025-10-21T06:25:56Z-
dc.date.available2025-10-21T06:25:56Z-
dc.date.issued2025-10-15-
dc.identifier.issn2468-0230-
dc.identifier.urihttp://hdl.handle.net/20.500.12323/8133-
dc.description.abstractThis research focused on improving the performance of piezoelectric nanogenerators by utilizing a piezoelectric nanogenerator (PNG) design that combines stacked piezoelectric electrospun nanofibers with conductive layers placed between them. A polyvinylidene fluoride (PVDF)/lead zirconate titanate (PZT)/unmodified graphene nanoplatelet (GNP) based multilayered structure (MLS) was produced as a parallel connection using a layer-bylayer assembly technique. At a vibrational frequency of 20 Hz, under a resistance load of 50 kΩ, the four-layered PNG reached an open-circuit voltage of 0.18 V(VRMS), a maximum electrical power of 0.166 µW (PRMS) by drawing a current of 1.82 µA (IRMS). The four-layered PNG, which exhibits high capacitance and low impedance characteristics, has increased the full charging voltage (3.96 V) to 80% compared to a single-layered PNG (2.2 V). Furthermore, the electrical power obtained from the four-layered PNG was approximately 4.38 times higher than the single-layered one. The resulting multilayered PNG (M-PNG) can be utilized effectively in self-powered wireless e-health systems for detecting human movement.en_US
dc.language.isoenen_US
dc.publisherElsevieren_US
dc.relation.ispartofseriesVol. 75;Surfaces and Interfaces-
dc.subjectPVDFen_US
dc.subjectPZTen_US
dc.subjectGrapheneen_US
dc.subjectElectrospinningen_US
dc.subjectMultilayered electrospunen_US
dc.subjectInternet of things-IoTen_US
dc.titleEnhanced piezoelectric performance of multilayered piezoelectric nanogenerator based on the PVDF/PZT/graphene Electrospun for IoT-based remote monitoringen_US
dc.typeArticleen_US
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