PVDF-based ferroelectric polymers and dielectric elastomers for sensor and actuator applications: a review

Citations

WEB OF SCIENCE

129
Citations

SCOPUS

142

초록

Electroactive polymers (EAPs) are materials that respond to electrical stimulation by exhibiting significantly large strains (to a maximum of a few hundred %) and vice versa. Thanks to their unique behaviors, EAPs have been widely and increasingly applied for sensing and actuating applications. EAPs are a promising material with many attractive properties such as fast electro-mechanical response, high mechanical and chemical stability, flexibility, low modulus, high strain capabilities, and shape adaptability. These features make them attractive for innovative applications such as wearable fabric sensors for IoT products and artificial muscles as bio-friendly actuators. In this article, we have presented a brief overview of electronic EAPs, especially PVDF-based materials, dielectric elastomers such as silicone and acrylic materials for sensors and actuators by focusing on their operation mechanisms and applications.

키워드

electroactive polymer; PVDF-based ferroelectric polymers; dielectric elastomer; sensor; actuator; POLY(VINYLIDENE FLUORIDE); CRYSTALLINE PHASE; ELECTROMECHANICAL CHARACTERIZATION; PIEZOELECTRIC NANOGENERATORS; SILICONE COMPOSITES; ARTIFICIAL MUSCLES; TACTILE SENSORS; ALPHA-PHASE; THIN-FILMS; STRAIN
제목
PVDF-based ferroelectric polymers and dielectric elastomers for sensor and actuator applications: a review
저자
Bae, Ji-Hun; Chang, Seung-Hwan
DOI
10.1088/2631-6331/ab0f48
발행일
2019-03
유형
Review
저널명
Functional Composites and Structures
권
1
호
1