Daewon Research Group

Nano Energy Device Laboratory

Research Highlight

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Energy Harvesting and Storage Device
Energy Harvesting and Storage Device
Triboelectric energy harvesting
Triboelectric effect has been recovered in 600 B.C. By using this effect, mechanical motion can be converted into electrical energy. Triboelectrification and electrostatic induction from the motion of contact/separation is main principle of triboelectric energy harvester.
Piezoelectric energy harvesting
Piezoelectricity means accumulating the electric charge in the piezoelectric material by exerting mechanical stress. Electrical energy is harvested by ambient pressure state of our surrounding environment.
Thermoelectric energy harvesting
From the difference of heat level, electrical energy is generated in that situation. This harvester uses the principle of Peltier-Seebeck effect which explains the conversion of thermal energy and electrical energy in PN junction.
Battery
The electrical energy generated by harvester needs to be reserved at energy storing device. Enhancing efficiency of charge-discharge performance contribute to supplying appropriate energy at wireless device.
Conclusion
Energy harvesting and storage technology will show great impact on small electronics, wearable devices, and wireless sensors which consume electricity lower than 2 W.
Related Journals

Implantable multilayer interdigitated triboelectric nanogenerator with nano-micro fibrous membrane and embedded switch-controlled capacitor for neck motion energy harvesting [Link]

  • Author : Hyunwoo Cho, Inkyum Kim, and Daewon Kim*
  • Journal : Biosensors and Bioelectronics
  • Published Date : 2025-07
  • Volume / Issue / Page : 279 / - / -

Multimodal magnetic sponge-based triboelectric nanogenerator for energy harvesting, force sensing, and controlled drug delivery [Link]

  • Author : Haoqi Li, Inkyum Kim, Tae Sik Goh, Jae Il Lee*, and Daewon Kim*
  • Journal : Nano Energy
  • Published Date : 2025-06
  • Volume / Issue / Page : 138 / - / -

Self-Powered Triboelectric Ethanol Sensor Based on CuO-doped Electrospun PVDF Fiber with Enhanced Sensing Performance [Link]

  • Author : Quanyu He, Hyunwoo Cho, Inkyum Kim, Jonghwan Lee, and Daewon Kim*
  • Journal : Polymers
  • Published Date : 2025-05
  • Volume / Issue / Page : 17 / - / -