4.8 Article

Performance enhancement of self-charging system by combining triboelectric nanogenerators and dielectric capacitors

期刊

NANO ENERGY
卷 119, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.nanoen.2023.109073

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Triboelectric nanogenerator; Dielectric capacitor; Self-charging system; Voltage multiplier circuit; Miniaturization

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The paper proposes a new method to fabricate an all-in-one self-charging system by integrating a TENG and a dielectric capacitor made from PVDF-HFP membrane. The system exhibits excellent output performance and is capable of generating high-voltage pulse output, which is of significant importance for the integration and miniaturization of the A-SCSs.
As an emerging platform technology, triboelectric nanogenerator (TENG) provides an effective strategy for the realization and widespread deployment of self-powered wireless sensor nodes. However, TENG still faces chal-lenges that necessitate continuous optimization in terms of device structure and output performance. Here, we propose a novel approach to fabricate an all-in-one self-charging system (A-SCS) by integrating a TENG and a dielectric capacitor made from poly(vinylidene fluoride-co-hexafluoropropylene) (P(VDF-HFP)) membrane using the configuration of shared electrodes. The integration capitalizes on the unique characteristics of each component, leading to an enhanced output performance. A 5.5 cm x 5.5 cm sized A-SCS is capable of generating voltages up to 2800 V, with each cycle storing an impressive energy of approximately 3 mu J, which can achieve self-triggered high voltage pulse output through the utilization of discharge tubes. Furthermore, even when miniaturized to a size of 1 cm x 1 cm, the A-SCS exhibits excellent output performance, with a maximum voltage output of 271 V, which is of significant importance for the integration and miniaturization of the A-SCSs. This work not only provides a feasible strategy to develop a new type of high-performance A-SCS, but also presents an excellent application prospect for miniaturized TENGs capable of generating high-voltage pulses.

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