Fluoropolymer ferroelectrics: Multifunctional platform for polar-structured energy conversion
Shanghai Jiao Tong University · Pennsylvania State University · +1 more institution
Abstract
Ferroelectric materials are currently some of the most widely applied material systems and are constantly generating improved functions with higher efficiencies. Advancements in poly(vinylidene fluoride) (PVDF)-based polymer ferroelectrics provide flexural, coupling-efficient, and multifunctional material platforms for applications that demand portable, lightweight, wearable, and durable features. We highlight the recent advances in fluoropolymer ferroelectrics, their energetic cross-coupling effects, and emerging technologies, including wearable, highly efficient electromechanical actuators and sensors, electrocaloric refrigeration, and dielectric devices. These developments reveal that the molecular and…
Citation impact
- FWCI
- 23.27
- Percentile
- 100%
- References
- 122
Authors
4Topics & keywords
- Fluoropolymer
- Materials science
- Wearable computer
- Nanotechnology
- Ferroelectricity
- Smart material
- Dielectric
- Ferroelectric polymers