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Flexible Two-ply Piezoelectric Yarn Energy Harvester
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We developed a flexible two-ply piezoelectric yarn-type generator using an electrospun polyvinylidenefluorideco-
trifluoroethylene (PVDF–TrFE) mat and a commercially available silver-coated nylon fiber. By rolling the silvercoated
nylon fiber into the electrospun PVDF–TrFE mat as the inner electrode, the two-dimensional piezoelectric PVDF–
TrFE mat was easily transformed into a one-dimensional fiber. Then silver-coated nylon fiber rolled in PVDF–TrFE was
plied with another similar fiber to make a flexible two-ply piezoelectric yarn. The overall fabrication processes of the
flexible two-ply piezoelectric yarn are simple and have a high application potential. The flexible two-ply piezoelectric
yarn can generate up to 0.7 V in compression and 0.55 V in tension. The yarn retained the piezoelectric performance in
various shapes, such as a sewn structure. In addition, the piezoelectric performance was sensitive to velocity and pressure.
The flexible two-ply piezoelectric yarn has potential applications as a human motion sensor, as a building block of energy-
harvesting textiles, and in self-powered biomedical applications.
Bentham Science Publishers Ltd.
Title: Flexible Two-ply Piezoelectric Yarn Energy Harvester
Description:
We developed a flexible two-ply piezoelectric yarn-type generator using an electrospun polyvinylidenefluorideco-
trifluoroethylene (PVDF–TrFE) mat and a commercially available silver-coated nylon fiber.
By rolling the silvercoated
nylon fiber into the electrospun PVDF–TrFE mat as the inner electrode, the two-dimensional piezoelectric PVDF–
TrFE mat was easily transformed into a one-dimensional fiber.
Then silver-coated nylon fiber rolled in PVDF–TrFE was
plied with another similar fiber to make a flexible two-ply piezoelectric yarn.
The overall fabrication processes of the
flexible two-ply piezoelectric yarn are simple and have a high application potential.
The flexible two-ply piezoelectric
yarn can generate up to 0.
7 V in compression and 0.
55 V in tension.
The yarn retained the piezoelectric performance in
various shapes, such as a sewn structure.
In addition, the piezoelectric performance was sensitive to velocity and pressure.
The flexible two-ply piezoelectric yarn has potential applications as a human motion sensor, as a building block of energy-
harvesting textiles, and in self-powered biomedical applications.
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