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Hybrid piezo-, pyro-, and triboelectric nanogenerator based on PVDF and rGO composite fibers for a multifunctional approach to energy harvesting applications

creativework.datePublished2025-05-19
dc.contributor.authorSukumaran, Sunija
dc.contributor.authorSzewczyk, Piotr K.
dc.contributor.authorBajda, Tomasz
dc.contributor.authorStachewicz, Urszula
dc.contributor.departmentWydział Inżynierii Metali i Informatyki Przemysłowej
dc.date.available2025-08-25T08:15:46Z
dc.date.issued2025
dc.description.abstractRecently, wearable nanogenerators have gained interest in energy harvesting and sensors, driven by smart electronics and Internet of Things (IoT) advancements. Here, we have developed a multifunctional nanogenerator that can convert mechanical and thermal energy into electrical energy via piezoelectric, triboelectric, and pyroelectric effects. The electrospun nanogenerator was fabricated to investigate the effect of reduced graphene oxide (rGO) on the energy generation of polyvinylidene fluoride (PVDF) fibers. The highest amount of electroactive β phase (81 %) and crystallinity (48.58 %) were obtained for 7 wt% rGO/PVDF fiber composite. Then, the 7 wt% rGO/PVDF composite was taken to prepare the piezo, tribo, and pyroelectric nanogenerator, and characterized using piezoresponse force microscopy (PFM), Kelvin probe microscopy (KPFM), and scanning thermal microscopy (SThM). Furthermore, the nanogenerator was made using the composite mat, illustrating its potential for powering small electronic devices using piezoelectric power and an enormous triboelectric power density of 3.37 ± 0.72 mWcm−2. We also demonstrate the device’s multifunctionality under thermal fluctuations. The results show the synergetic tribo and pyroelectric current of 33nA from 7 wt% rGO/PVDF. The present work indicates the significance of rGO inclusion into a PVDF matrix, resulting in enhanced multifunctional properties for energy harvesting, thereby enabling self-powering capabilities for microelectronic devices.en
dc.description.versionwersja wydawnicza
dc.identifier.doihttps://doi.org/10.1016/j.matdes.2025.114105
dc.identifier.urihttps://repo.agh.edu.pl/handle/AGH/114526
dc.language.isoeng
dc.rightsAttribution 4.0 International
dc.rights.accessotwarty dostęp
dc.subjectPVDFen
dc.subjectreduced graphene oxideen
dc.subjectpiezoelectricityen
dc.subjecttriboelectricityen
dc.subjectpyroelectricityen
dc.subjectenergy harvestingen
dc.titleHybrid piezo-, pyro-, and triboelectric nanogenerator based on PVDF and rGO composite fibers for a multifunctional approach to energy harvesting applications
dc.title.relatedMaterials & Design
dc.typeartykuł
dspace.entity.typePublication
project.funder.nameEuropejska Rada ds. Badań Naukowych (ERBN)
project.identifierERC grant agreement no. 948840
project.nameBioCom4SavEn
project.program.nameEuropean Research Council under the European Union's Horizon 2020 Framework Programme for Research and Innovation
publicationissue.pagination114105
publicationvolume.volumeNumber254
relation.isAuthorOfPublicationea1d9f4c-96ce-4064-b151-516569852629
relation.isAuthorOfPublication7567ba77-4720-44a9-9c10-d81687304dca
relation.isAuthorOfPublicationaf5f766e-eddd-479e-bbfd-0bba16595bd6
relation.isAuthorOfPublication.latestForDiscoveryea1d9f4c-96ce-4064-b151-516569852629
relation.isOrgUnitOfPublication852c64ef-7420-4762-9a79-64b0ca42b34f
relation.isOrgUnitOfPublication.latestForDiscovery852c64ef-7420-4762-9a79-64b0ca42b34f

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