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Electrostatic discharge prevention system via body potential control based on a triboelectric nanogenerator

Title
Electrostatic discharge prevention system via body potential control based on a triboelectric nanogenerator
Author(s)
Lee, CheoljaeHeo, MinsuPark, HyosikJoo, HyeonseoSeung, WanchulLee, Ju-Hyuck
Issued Date
2022-12
Citation
Nano Energy, v.103
Type
Article
Author Keywords
Static electricitySelf-poweredUngroundedTriboelectric nanogeneratorElectrostatic discharge prevention
Keywords
HUMIDITYCHARGE
ISSN
2211-2855
Abstract
In modern society, electrostatic discharge (ESD) is frequently caused by humans charged with positive charges by contact electrification, wherein natural grounding is difficult. ESD not only makes our skin uncomfortable but can also lead to the destruction of small electronic components, fires, and explosions. Therefore, there is a continuous demand for technology, such as an ungrounded anti-static method, to prevent static electricity as the grounding method is inconvenient. This study demonstrates an ESD prevention system (EPS) using a triboelectric nanogenerator (TENG), which is ungrounded and does not require an additional power source. The developed EPS prevents ESD by supplying the negative charges generated from TENGs to the human body. Various factors were investigated to optimize the performance of the EPS. Using the TENG-based EPS, the electric potential that raised to 200, 500, and 1000 V was reduced to 0 V within 20, 31, and 38 s, respectively. Additionally, it succeeded in maintaining the electric potential of a body in a stable state by supplying negative charges generated by TENG, which is operated by the mechanical energy of the human body to compensate for the positive charges generated by contact electrification. This study provides a new design for ESD prevention devices that can be utilized in various industrial units, including semiconductors, petrochemicals, and chemicals, and for the general public. © 2022 Elsevier Ltd
URI
http://hdl.handle.net/20.500.11750/17437
DOI
10.1016/j.nanoen.2022.107834
Publisher
Elsevier Ltd
Related Researcher
  • 이주혁 Lee, Ju-Hyuck
  • Research Interests Energy Harvesting; Synthesis of Various Nano/Microstructured Energy Materials; Piezoelectric Generator; Triboelectric Generator; Bio-Compatible Energy Materials and Generator; Biomimetic Biomolecule based Energy Materials and Devices
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Appears in Collections:
Department of Energy Science and Engineering Energy Conversion Materials Engineering Laboratory 1. Journal Articles

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