Performance Study of TENG for Energy Harvesting Application

Author:

Sunithamani S,Arunmetha S.,Poojitha B,Niveditha A,Ankitha B,Lakshmi P

Abstract

Abstract Triboelectric nanogenerators (TENG) use the concepts of contacting electrification and electrostatic production from mechanical energy to electrical energy. The premise behind energy harvesting technology is that devices may collect energy from their environment in real-time and utilize it right away, requiring only temporary storage. Compared design strategies for efficient energy harvesting systems in all modes in terms of implementation and experimental results in this work. Air, copper, Nylon, and iron are triboelectric materials used to demonstrate TENG modes’ charging behavior. Examines the performance study of TENG for energy harvesting applications. This technology can be used in Internet of Things (IoT) applications, manufacturing, precision agriculture, and human monitoring for healthcare applications on a smaller scale when significant networking of sensors and actuators is required, and tight and essential energy supply needs exist.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference17 articles.

1. Sustainable Energy Harvesting through Triboelectric Nano-Generators: A Review of status and applications;Barkas;Energy Procedia,2019

2. Structurally engineered textile-based triboelectric nanogenerator for energy harvesting application;Somkuwar;Journal of Materials Science,2020

3. Silk Nanofiber-Networked Bio-Triboelectric Generator: Silk Bio-TEG;Hyun-Jun;Advanced Energy Materials,2016

4. Designing and investigation of braided-cum-woven structure for wearable heating textile;Akanksha;Engineering Research Express,2020

5. A flexible, planar energy harvesting device for scavenging roadside waste mechanical energy via the synergistic piezoelectric response of K 0.5 Na 0.5 NbO 3-BaTiO 3/PVDF composite films;Vivekananthan;Nanoscale,2017

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