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Published in: Journal of Materials Science 15/2021

15-02-2021 | Composites & nanocomposites

Influence of core–shell structured conductive fillers on the electromechanical properties of ferroelectric nanocomposites

Authors: Jie Zhang, Feng-wan Zhao, Zeng-hui Liu, Jin-yan Zhao, Li Jin, Yi-jun Zhang, Xiao-ming Chen, Pei-jun Xu, Jian Zhuang, Wei Ren, Zuo-Guang Ye

Published in: Journal of Materials Science | Issue 15/2021

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Abstract

Although the ultra-large induced strain of ferroelectric polymers has been achieved under an electric field near breakdown strength, the high driving voltage has been a long-standing obstacle for their safety applications in the actuator, transducer, wearable devices. To resolve this issue, novel core–shell structured CNT–Al2O3 nanoparticles grown via atomic layer deposition are utilized to improve the electromechanical properties of P(VDF-TrFE)-based nanocomposites under low applied fields. The electric coercive field (Ec) of nanocomposites substantially decreased with increase in fillers, giving rise to the boosted polarization and induced strain at low electric field. Accordingly, the nanocomposite with 1.1 wt% CNT–Al2O3 exhibited a 600% increase in transverse induced strain than that of the neat P(VDF-TrFE). For an identical induced strain, the required driving voltage of the nanocomposite could be effectively reduced by up to 200%. By numerically calculating electric field distribution and polarization, it was revealed that the higher ferroelectric property and lower driving voltage resulted from the enhanced interfacial polarization and the reduced field intensity to switch the polarization of the nanocomposites. This study provides a new route to improve the performance of ferroelectric polymers and holds great promise for using ferroelectric nanocomposites with low operating voltage in practical applications, including portable microfluidic and electronic devices.

Graphical abstract

To reduce the driving voltage, a novel core–shell structured CNT–Al2O3 nanoparticle filler was utilized to improve the electromechanical properties of P(VDF-TrFE)-based nanocomposites under the low applied electric field. The introduction of CNT–Al2O3 filler in nanocomposite could significantly reduce the required electric field intensity for switching the polarization. Owning to its lowest Ec and higher polarization, the transverse induced strain of 1.1 wt% nanocomposite increased by 600% than that of the neat P(VDF-TrFE).

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Appendix
Available only for authorised users
Literature
2.
go back to reference Basset DC (1982) Developments in crystalline polymers. Applied Science Publishers Ltd., LondonCrossRef Basset DC (1982) Developments in crystalline polymers. Applied Science Publishers Ltd., LondonCrossRef
3.
go back to reference Chinaglia DL, Gregorio R, Stefanello JC, Alberto R, Altafim P, Wirges W, Wang FP, Gerhard R (2010) Influence of the solvent evaporation rate on the crystalline phases of solution-cast poly (vinylidene fluoride) films. J Appl Polym Sci 116:785–791. https://doi.org/10.1002/appCrossRef Chinaglia DL, Gregorio R, Stefanello JC, Alberto R, Altafim P, Wirges W, Wang FP, Gerhard R (2010) Influence of the solvent evaporation rate on the crystalline phases of solution-cast poly (vinylidene fluoride) films. J Appl Polym Sci 116:785–791. https://​doi.​org/​10.​1002/​appCrossRef
17.
22.
go back to reference Xie LY, Huang XY, Yang K, Li ST, Jiang PK (2014) “Grafting to” route to PVDF-HFP-GMA/BaTiO3nanocomposites with high dielectric constant andhigh thermal conductivity for energy storage andthermal management applications. J. Mater. Chem. A 2:5244–5251. https://doi.org/10.1039/c3ta15156eCrossRef Xie LY, Huang XY, Yang K, Li ST, Jiang PK (2014) “Grafting to” route to PVDF-HFP-GMA/BaTiO3nanocomposites with high dielectric constant andhigh thermal conductivity for energy storage andthermal management applications. J. Mater. Chem. A 2:5244–5251. https://​doi.​org/​10.​1039/​c3ta15156eCrossRef
36.
38.
go back to reference Silibin MV, Belovickis J, Svirskas S, Ivanov M, Banys J, Solnyshkin AV, Gavrilov SA, Varenyk OV, Pusenkova AS, Morozovsky N, Shvartsman VV, Morozovska AN (2015) Polarization reversal in organic-inorganic ferroelectric composites: modeling and experiment. Appl Phys Lett 107:142907. https://doi.org/10.1063/1.4932661CrossRef Silibin MV, Belovickis J, Svirskas S, Ivanov M, Banys J, Solnyshkin AV, Gavrilov SA, Varenyk OV, Pusenkova AS, Morozovsky N, Shvartsman VV, Morozovska AN (2015) Polarization reversal in organic-inorganic ferroelectric composites: modeling and experiment. Appl Phys Lett 107:142907. https://​doi.​org/​10.​1063/​1.​4932661CrossRef
42.
go back to reference Chen J, Wang X, Yu X, Yao L, Duan Z, Fan Y, Jiang Y, Zhou Y, Pan Z (2018) High dielectric constant and low dielectric loss poly(vinylidene fluoride) nanocomposites: via a small loading of two-dimensional Bi2Te3@Al2O3 hexagonal nanoplates. J Mater Chem C 6:271–279. https://doi.org/10.1039/c7tc04758dCrossRef Chen J, Wang X, Yu X, Yao L, Duan Z, Fan Y, Jiang Y, Zhou Y, Pan Z (2018) High dielectric constant and low dielectric loss poly(vinylidene fluoride) nanocomposites: via a small loading of two-dimensional Bi2Te3@Al2O3 hexagonal nanoplates. J Mater Chem C 6:271–279. https://​doi.​org/​10.​1039/​c7tc04758dCrossRef
Metadata
Title
Influence of core–shell structured conductive fillers on the electromechanical properties of ferroelectric nanocomposites
Authors
Jie Zhang
Feng-wan Zhao
Zeng-hui Liu
Jin-yan Zhao
Li Jin
Yi-jun Zhang
Xiao-ming Chen
Pei-jun Xu
Jian Zhuang
Wei Ren
Zuo-Guang Ye
Publication date
15-02-2021
Publisher
Springer US
Published in
Journal of Materials Science / Issue 15/2021
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-021-05857-7

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