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Fully Solution-Processed Polymeric Multilayer Piezoelectric Devices

delete2024-11-08
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PRE
AI
S
Shiyu Hu
Y
Yanguang Zhang
王东泽 cover
王东泽 (Dongze Wang)
J
John Weber
S
Shoude Chang
G
Gaozhi Xiao
J
Jianping Lu *
N
Neil Graddage
J
Jun Gao
T
Tahmid Rakin Siddiqui
S
Suprabha Islam
C
Chun Il Kim
Y
Ye Tao
DOI:10.1002/admt.202401009delete
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Abstract

Abstract

En 中文
This study demonstrates fully solution-processed polymeric multilayer piezoelectric devices. The key challenge, the effective control of the redissolution issue that will cause severe electrical shorting and inconsistent piezoelectric output, is overcome by searching for and using a solvent that offers adequate solubility but extremely slow dissolution for the piezoelectric polymer. The solvent screening methodology is established and demonstrated. The process parameters is systematically optimized to maximize the piezoelectric performance of the multilayer devices. The multilayer devices can output a high charge density of 376 mu C m-2, even higher than the record charge density of 250 mu C m-2 achieved by traditional contact electrification-based triboelectric nanogenerators operated in ambient air. The crucial factors for increasing device fabrication yield, namely resistance to short circuits and poling-induced breakdown, are analyzed. The potential of multilayer devices in practical applications is demonstrated using a five-layer device as a direct power source and energy harvester. More importantly, the process developed here is transferrable for cost-effective high-throughput roll-to-roll production. This work thus lays the foundation for the mass production of polymeric multilayer piezoelectric devices and paves the way for their future commercialization.
Keywords:
low-cost
multilayer
nanogenerator
piezoelectric
polymer
roll-to-roll

Journal

Advanced Materials Technologies cover
Advanced Materials Technologies
IF:
6.2
Papers:
5.2K
Citations:
2.4W

Organization

Q
queens university - canada
Scholars:
1.8W
Papers: 1.7W
Citations: 29
U
university of alberta
Scholars:
5.1W
Papers: 4.9W
Citations: 65
N
National Research Council Canada
Scholars:
7.9K
Papers: 7.9K
Citations: 6.8K
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