4.8 Article

Water wave energy harvesting and self-powered liquid-surface fluctuation sensing based on bionic-jellyfish triboelectric nanogenerator

期刊

MATERIALS TODAY
卷 21, 期 1, 页码 88-97

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.mattod.2017.10.006

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资金

  1. National Natural Science Foundation of China [61405131, 51432005, 5151101243, 51561145021]
  2. National Key R & D Project from Minister of Science and Technology [2016YFA0202704]
  3. Beijing Municipal Science & Technology Commission [Y3993113DF]
  4. thousands talents program for pioneer researcher and his innovation team, China

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Due to the natural working mechanism of triboelectric nanogenerators (TENGs), potential energy stored by elastic materials may not be effectively converted into electric power, post mechanical triggering. Here, we report a practical bionic-jellyfish triboelectric nanogenerator (bjTENG) with polymeric thin film as the triboelectric material, which is shape-adaptive, with a hermetic package and a unique elastic resilience structure, similar to the behavior of a jellyfish. The charge separation in the elastic resilience of this bionic-structure is based on the liquid pressure-induced contact-separation of the triboelectric layers. On the basis of the conjunction of the triboelectrification and the electrostatic induction, a sustainable and enhanced output performance of 143 V, 11.8 mA/m(2) and 22.1 mu C/m(2) under a low frequency of 0.75 Hz and at a water depth of 60 cm is produced, which can be used to supply power for dozens of green LEDs or a temperature sensor directly. More significantly, bjTENG is believed to be a priority technology which is attributable to its highly sensitivity, portability, and suitability for continuous detection of water level and fluctuation. Furthermore, a wireless self-powered fluctuation sensor early-warning system, which provides exact and wireless monitoring of fluctuation of a liquid surface, is also successfully developed.

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