4.8 Article

Waterproof, breathable and washable triboelectric nanogenerator based on electrospun nanofiber films for wearable electronics

期刊

NANO ENERGY
卷 90, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.nanoen.2021.106639

关键词

triboelectric nanogenerator; electrospinning; nanofiber films; wearable electronics

资金

  1. Shenzhen Constantly-supported Project for Universities and Colleges [GXWD20201230155427003-20200821 232246001]
  2. National Key Laboratory of Science and Technology on Advanced Composites in Special Environments [6142905192507]
  3. National Key R&D Program of China [2016YFA0202701]

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This study presented a wearable electronic device made of nanofiber-based triboelectric nanogenerator that is waterproof, breathable, and comfortable. By utilizing the coupling effect between nano-net structure and porous structure, the effective contact area was effectively enhanced, resulting in improved electrical performance and washable characteristics.
Flexible, breathable and widely implementable triboelectric nanogenerator is highly demanded for wearable electronics to satisfy the technical requirements of the Internet of Things (IoT). The fabric-based wearable electronic devices have conspicuous advantages, however, how to optimize their electrical performance and comfortable characteristics is a great challenge. Here, we reported a waterproof, breathable and wearable electronics by fabricating nanofiber-based triboelectric nanogenerator (NF-TENG). The NF-TENG was consisted of the electrospun PA66/MWCNTs (multi-walled carbon nanotubes) nanofibers film with the nano-net structure used as the tribo-positive layer and the electrospun PVDF nanofibers film used as the tribo-negative layer, respectively. Owing to the coupling effect between the nano-network structure and porous structure, the effective contact area is enhanced effectively. A 20 mm x 20 mm NF-TENG demonstrates a peak voltage, current and a maximum power density up to 142 V, 15.5 mu A and 1.30 W/m2, respectively. The NF-TENG can be worth spread application to resolve power source for some wearable electronics. Also, the as-obtained NF-TENG has high gaspermeability of 11.5 mm s-1 benefiting from the hierarchical networks, and thus exhibits good washable characteristics. These results indicate that the NF-TENG is promising for providing a new vision in the area of selfpowered wearable technology.

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