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Article

Enhancing the Triboelectric Nanogenerator Output by Micro Plasma Generation in a Micro-Cracked Surface Structure

1
School of Mechatronics Engineering, Korea University of Technology & Education, 600, Chungjeol-ro, Byeongcheon-myeon, Dongnam-gu, Cheonan-si 31253, Korea
2
Precision Mechanical Process and Control R&D Group, Korea Institute of Industrial Technology (KITECH), 42-7, Baegyang-daero 804 beon-gil, Sasang-gu, Busan 46938, Korea
3
Department of Mechanical Engineering, School of Industrial and Mechanical Engineering, The University of Suwon, 17, Wauan-gil, Bongdam-eup, Hwaseong-si 18323, Korea
*
Authors to whom correspondence should be addressed.
Appl. Sci. 2021, 11(9), 4262; https://doi.org/10.3390/app11094262
Submission received: 8 April 2021 / Revised: 29 April 2021 / Accepted: 3 May 2021 / Published: 8 May 2021
(This article belongs to the Special Issue Reliability of Materials and the Systems: Volume II)

Abstract

Energy harvesting, especially for powering low-power internet-of-things (IoT) devices, is gaining attention in recent years. Triboelectric nanogenerators have been studied to improve the output by applying a structure that can concentrate electrons on the surface of the generator materials. For enhancing the triboelectrification output, we herein focused on the power output line. A method for increasing the amount of electrons on the power lead by potential difference and their acceleration was studied. A rod was shaken by external vibrations; the accumulated charges were discharged in a manner similar to that of a lightning rod. Micro plasma was generated when the rod made contact with the mating micro-cracked surface innumerable times. The micro-cracked surface was fabricated with a diamond tip moving horizontally to the surface. As the resistance of the micro plasma was close to zero, the amount of electron movement was instantaneously accelerated. This type of triboelectric generator can be fabricated in the form of an electric box. By using this triboelectric power amplifier, voltage can be amplified 2 to 3 times, and the current can be amplified 10 to 15 times; thus, enhanced energy harvesting efficiency is attained.
Keywords: energy harvesting; triboelectric nanogenerators; micro plasma energy harvesting; triboelectric nanogenerators; micro plasma

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MDPI and ACS Style

Park, J.; Cho, H.; Lee, Y.-S. Enhancing the Triboelectric Nanogenerator Output by Micro Plasma Generation in a Micro-Cracked Surface Structure. Appl. Sci. 2021, 11, 4262. https://doi.org/10.3390/app11094262

AMA Style

Park J, Cho H, Lee Y-S. Enhancing the Triboelectric Nanogenerator Output by Micro Plasma Generation in a Micro-Cracked Surface Structure. Applied Sciences. 2021; 11(9):4262. https://doi.org/10.3390/app11094262

Chicago/Turabian Style

Park, Jinhyoung, Hanchul Cho, and Yong-Seok Lee. 2021. "Enhancing the Triboelectric Nanogenerator Output by Micro Plasma Generation in a Micro-Cracked Surface Structure" Applied Sciences 11, no. 9: 4262. https://doi.org/10.3390/app11094262

APA Style

Park, J., Cho, H., & Lee, Y.-S. (2021). Enhancing the Triboelectric Nanogenerator Output by Micro Plasma Generation in a Micro-Cracked Surface Structure. Applied Sciences, 11(9), 4262. https://doi.org/10.3390/app11094262

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