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July 12, 2022Advanced Functional Materials

Durability Improvement of Breeze‐Driven Triboelectric‐Electromagnetic Hybrid Nanogenerator by a Travel‐Controlled Approach

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Authors

YLYingjin LuoXiamen UniversityPCPengfei ChenXihua UniversityLCLeo N.Y. CaoChinese Academy of Sciences

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Implication

Experimental evaluation demonstrates improved durability and doubled power density in breeze-driven hybrid nanogenerators, indicating viable self-powered environmental monitoring.

Key Points

  • To develop a travel-controlled triboelectric-electromagnetic hybrid nanogenerator that mitigates mechanical friction wear while maintaining high electrical output under gentle breeze conditions.
  • Designed a travel-controlled triboelectric nanogenerator (TC-TENG) utilizing a combined gear train and cam switch to periodically toggle between contact and non-contact modes at tunable frequencies.
  • Integrated the hybrid generator with an energy management circuit and wireless communication module to evaluate continuous sensing performance under wind speeds below 3 m s⁻¹.
  • The TC-TENG maintained 90% of its initial electrical output after continuous operation for 80 hours (1,920,000 cycles).
  • Structural optimization doubled the power density per unit wind speed compared to previous related hybrid nanogenerator designs.
  • The integrated wireless sensing platform continuously monitored environmental parameters and transmitted alerts to mobile devices at wind speeds under 3 m s⁻¹.

Cite This Study

Luo et al. (2022) studied this question.

synapsesocial.com/papers/6a7f0b6be9bb045a73c3031dhttps://doi.org/10.1002/adfm.202205710
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