JOURNAL ARTICLE

Highly electrostrictive poly(vinylidene fluoride–trifluoroethylene) networks

R. CasaliniC. M. Roland

Year: 2001 Journal:   Applied Physics Letters Vol: 79 (16)Pages: 2627-2629   Publisher: American Institute of Physics

Abstract

We report greatly improved electromechanical performance from a poly(vinylidene fluoride–trifluoroethylene) copolymer by chemical cross linking. Curing with an organic peroxide in combination with a free-radical trap, followed by crystallization, yields a ferroelectric network exhibiting a high electrostrictive response. The electric-field-induced strains were measured at low frequency using an air gap capacitance method and by a noninterferometric optical technique. At electric fields as low as 9 MV/m, longitudinal strains of 12% are obtained. This is more than two orders of magnitude better than conventional vinylidene fluoride materials, and more than an order of magnitude larger than the best results reported to date on any fluoropolymer. Since the mechanical modulus of the network is high (∼0.5 GPa), this work demonstrates the potential for extending the range of utility for polymer-based electromechanical materials.

Keywords:
Electrostriction Materials science Ferroelectricity Fluoropolymer Fluoride Electric field Capacitance Curing (chemistry) Polymer Composite material Ferroelectric polymers Copolymer Polymer chemistry Piezoelectricity Optoelectronics Dielectric Electrode Physical chemistry Chemistry Inorganic chemistry

Metrics

31
Cited By
2.01
FWCI (Field Weighted Citation Impact)
12
Refs
0.85
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Dielectric materials and actuators
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Sensor and Energy Harvesting Materials
Physical Sciences →  Engineering →  Biomedical Engineering
Ferroelectric and Piezoelectric Materials
Physical Sciences →  Materials Science →  Materials Chemistry

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