4.7 Article

Insight into Cigarette Wrapper and Electroactive Polymer Based Efficient TENG as Biomechanical Energy Harvester for Smart Electronic Applications

Journal

ACS APPLIED ENERGY MATERIALS
Volume 1, Issue 9, Pages 4963-4975

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsaem.8b00951

Keywords

TENG; NIPS; PVDF sponge; power density; durability

Funding

  1. University Grant Commission (UGC), India

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Here, we demonstrated an arc shaped flexible triboelectric nanogenerator (TENG) that efficiently harvests asymmetrical mechanical energy for powering several portable electronic devices. Here the fabrication of TENG is based on the integration of a cigarette wrapper, spongelike poly(vinylidene fluoride) (PVDF) film, and conducting carbon tape. Here, the spongelike PVDF film was prepared through nonsolvent induced phase separation (NIPS) technique (by simply spraying PVDF solution on a water surface in a Petri dish). Owing to the low density of the PVDF sponge and the cigarette wrapper, the final device with a volume of 6.6 cm(3) shows a total mass of 1.259 g. The fabricated TENG exhibits open circuit voltage of similar to 342 V and short circuit current of similar to 8.1 mu A on frequencies of similar to 3.4 Hz without electrospinning and poling treatment under finger tapping, which gives a maximum area power density of similar to 0.37 mW/cm(2) at a load resistance of 40 M Omega The TENG shows excellent durability without any change in output performance successively for 7 days (193200 cycles). Also, this device directly lit up 136 commercial LEDs instantly without any rectification unit and sensed different types of mechanical forces. With easy fabrication and cost-effective technique, this work paves a new and smart way to fabricate high performance TENG for powering portable electronic appliances.

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