Enhanced triboelectric output of PDMS-based composite film with bi-material filling and surface patterning
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作者:
LIU Sheng
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
LIU Sheng
[1
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LIAO SiHua
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
LIAO SiHua
[1
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LIU Dan
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
LIU Dan
[1
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ZHAO Rong
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
ZHAO Rong
[1
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ZHOU Teng
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
ZHOU Teng
[1
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YAN WenYuan
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
YAN WenYuan
[1
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WEI KeXiang
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
WEI KeXiang
[1
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ZOU HongXiang
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Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of EngineeringHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
ZOU HongXiang
[1
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ZHAO LinChuan
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State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong UniversityHunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
ZHAO LinChuan
[2
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机构:
[1] Hunan Provincial Key Laboratory of Vehicle Power and Transmission System, Hunan Institute of Engineering
[2] State Key Laboratory of Mechanical System and Vibration, School of Mechanical Engineering, Shanghai Jiao Tong University
Triboelectric nanogenerators(TENGs) are highly promising energy-harvesting devices that exhibit considerable potential for use in self-powered wearable electronics. Nano/microfillers and surface microstructure modification have been proposed to improve the triboelectric performance of TENGs. In this work, performance-enhanced flexible polydimethylsiloxane(PDMS) was developed through bi-material(reduced graphene oxide/fluorinated ethylene propylene, rGO/FEP) modification and filtrationmembrane-patterned surface microstructure. The rGO/FEP with high charge-inducing and-trapping capabilities can be used as the dielectric-enhanced filler for improving triboelectricity. Ordered micro-dents of 5–50 μm are created on the modified PDMS surface with an increased contact area of TENG. Compared with the pure PDMS, the modified PDMS film-based TENG could deliver a substantial enhancement in power density(0.87 mW cm-2) by 28 times. Further, the versatility of this device is demonstrated in human activity monitoring and capacitor charging. This work provided a simple, high-tunability, and scalable approach for improving the output performance of TENGs for biomechanical energy-harvesting devices that can be integrated into self-powering wearable electronics.