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dc.contributor.authorRodrigues-Marinho, T.por
dc.contributor.authorLima, A. C.por
dc.contributor.authorMartins, P.por
dc.contributor.authorCosta, P.por
dc.contributor.authorLanceros-Méndez, S.por
dc.date.accessioned2020-04-14T11:22:42Z-
dc.date.available2022-01-01T07:01:02Z-
dc.date.issued2020-
dc.identifier.isbn9780750320030-
dc.identifier.urihttps://hdl.handle.net/1822/64840-
dc.description.abstractPiezoelectric materials are increasingly being used in a wide range of applications. Single crystals, ceramics and polymers are all being used sensors, actuators and energyharvesting applications. Among the most used piezoelectric materials are lead zirconate titanate (PZT) and barium titanate (BaTiO3) ceramics and the polymer poly(vinylidene fluoride) (PVDF). Polymer-based composites including high dielectric and piezoelectric ceramic nano- or microparticles are also largely investigated to take advantage of the advantageous properties of both polymers and ceramics. Among the different processing methods, electrospinning allows the development of piezoelectric nano- and microfibers opening a distinct range of applications in electronics, energy generation and storage or membranes for water and air remediation.por
dc.description.sponsorshipThis work was supported by the Portuguese Foundation for Science and Technology (FCT) in the framework of the Strategic Funding UID/FIS/04650/2013 and projects NORTE-01-0145-FEDER-028237, POCI-01-0145-FEDER-028159, PTDC/EEISII/5582/2014 and PTDC/CTM-ENE/5387/2014. TM, ACL, PC and PLM thanks to FCT by financial support for the SFRH/BD/140242/2018, SFRH/BD/132624/2017, SFRH/BPD/110914/2015, SFRH/BPD/96227/2013 and SFRH/BD/98219/2013 grants, respectively. Financial support from the Spanish Ministry of Economy and Competitiveness (MINECO) through the project MAT2016-76039-C4-3-R (AEI/FEDER, UE) (including the FEDER financial support) and from the Basque Government Industry and Education Departments under the ELKARTEK, HAZITEK and PIBA (PIBA-2018-06) programs, respectively, are acknowledged.por
dc.language.isoengpor
dc.publisherIOP Publishingpor
dc.relationinfo:eu-repo/grantAgreement/FCT/5876/147414/PTpor
dc.relationPTDC/EEISII/5582/2014por
dc.relationPTDC/CTM-ENE/5387/2014por
dc.relationSFRH/BD/140242/2018por
dc.relationSFRH/BD/132624/2017por
dc.relationSFRH/BPD/110914/2015por
dc.relationinfo:eu-repo/grantAgreement/FCT/SFRH/SFRH%2FBPD%2F96227%2F2013/PTpor
dc.relationinfo:eu-repo/grantAgreement/FCT/SFRH/SFRH%2FBD%2F98219%2F2013/PTpor
dc.rightsopenAccesspor
dc.subjectPiezoelectricitypor
dc.subjectPiezoelectric materialspor
dc.subjectSensorspor
dc.subjectActuatorspor
dc.subjectEnergy harvestingpor
dc.subjectElectrospinningpor
dc.titleIntroduction to piezoelectricity and electrospun piezoelectric materials and devicespor
dc.typebookPartpor
dc.peerreviewedyespor
dc.relation.publisherversionhttps://iopscience.iop.org/book/978-0-7503-2005-4/chapter/bk978-0-7503-2005-4ch2por
dc.identifier.doi10.1088/978-0-7503-2005-4ch2por
dc.subject.wosScience & Technologypor
sdum.bookTitleENERGY HARVESTING PROPERTIES OF ELECTROSPUN NANOFIBERSpor
Aparece nas coleções:FUNCTIONAL AND SMART MATERIALS AND SURFACES FOR ADVANCED APPLICATIONS (2018 - ...)
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