Challenges and Outlook

dc.contributor.authorFernandes, L.
dc.contributor.authorCosta, Carlos Miguel Silva
dc.contributor.authorLanceros-Mendez, S.
dc.date.accessioned2026-06-11T09:25:52Z
dc.date.issued2025-01-01
dc.date.updated2026-04-08T08:19:21Z
dc.description.abstractThe term “piezo” originates from the Greek word for pressure, piezoelectricity meaning electricity (also from the Greek word "electron”) resulting from pressure. Broadly, piezoelectricity refers therefore to the association between a mechanical solicitation and the variation of the dipolar structure of a dielectric material, leading to surface charge variations and the generation of a voltage (direct piezoelectricity) or the correlation between the application of an electric field and a mechanical deformation (converse/indirect piezoelectricity).eng
dc.description.sponsorshipThe authors thank the Fundação para a Ciência e Tecnologia (FCT) for financial support under the framework of Strategic Funding UIDB/04650/2020, UID/FIS/04650/2020, and UID/EEA/04436/2020 and under projects, POCI- 01-0247-FEDER-046985, 10.54499/2022.03781.PTDC and 10.54499/2022.03931.PTDC funded by national funds through FCT and by the ERDF through the COMPETE2020—Programa Operacional Competitividade e Internacionalização (POCI). The authors also thank the FCT investigator contracts 2020.04028.CEECIND (DOI 10.54499/2020.04028.CEECIND/CP1600/CT0018) (C.M.C.). This study forms part of the Advanced Materials program and was supported by MCIN with funding from European Union NextGenerationEU (PRTR-C17.I1) and by the Basque Government under the IKUR program. This work has been supported by PID2022-138572OB-C42 project funded by MCIN/AEI/10.13039/501100011033/FEDER, UE and by by project BIOIMP_ACE_MAS_6_E, co-funded by the European Union through the Interreg VI-A Spain-Portugal Programme (POCTEP) 2021-2027.
dc.distributioninternational
dc.identifier.citationFernandes, L., Costa, C. M., & Lanceros-Méndez, S. (2025). Challenges and Outlook. In Engineering Materials (pp. 389–394). Springer Nature Switzerland. https://doi.org/10.1007/978-3-031-88736-9_16
dc.identifier.doi10.1007/978-3-031-88736-9_16
dc.identifier.eisbn978-3-031-88736-9
dc.identifier.isbn978-3-031-88735-2
dc.identifier.issn1612-1317
dc.identifier.urihttps://hdl.handle.net/1822/101950
dc.language.isoeng
dc.peerreviewedyes
dc.publisherSpringer Nature
dc.relationPhysics Center of Minho and Porto Universities [UIDB/04650/2020]
dc.relationThree dimensional printed batteries for advanced electronics applications [2020.04028.CEECIND/CP1600/CT0018]
dc.relationPhysics Center of Minho and Porto Universities [UIDP/04650/2020]
dc.relationMicroelectromechanical Systems Research Unit [UIDP/04436/2020]
dc.relationMicroelectromechanical Systems Research Unit [UIDB/04436/2020]
dc.relationBiocompatible Piezoelectric Thin Films: Towards a Wearable Sensor Devices [2022.03781.PTDC]
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dc.rightsrestrictedAccess
dc.titleChallenges and Outlookeng
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oaire.awardTitlePhysics Center of Minho and Porto Universities [UIDB/04650/2020]
oaire.awardTitleThree dimensional printed batteries for advanced electronics applications [2020.04028.CEECIND/CP1600/CT0018]
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oaire.citationEndPage394
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sdum.bookTitlePiezoelectric Polymers and Polymer Composites for Advanced Applications
sdum.export.identifier18881
sdum.journalEngineering Materialspor

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