Issue 3, 2024

A nanoscale surface engineered magneto-mechano-triboelectric nanogenerator enabled by reliable pattern replication for self-powered IoT devices

Abstract

The present work demonstrates a high-performance magneto-mechano-triboelectric nanogenerator (MMTENG) by utilizing a reliable pattern replication process to harvest electric energy from a magnetic field for powering Internet of Things (IoT) devices. This process enables the formation of a nanoscale structure on a triboelectric polymer film for improving contact triboelectrification and electrostatic induction. The surface-patterned MMTENG achieves a high open-circuit peak-to-peak voltage (Vpp = 521 V), short-circuit current (Imax = 177 μA), and maximum peak power (Pmax = 7 mW) under an 8 Oe magnetic field, which is 4.6 times higher than that of a non-patterned MMTENG device (Pmax = 1.5 mW). The harvested electric power from the MMTENG device is utilized to operate an IoT environmental (temperature and humidity) monitoring sensor.

Graphical abstract: A nanoscale surface engineered magneto-mechano-triboelectric nanogenerator enabled by reliable pattern replication for self-powered IoT devices

Supplementary files

Article information

Article type
Paper
Submitted
14 Sep 2023
Accepted
02 Jan 2024
First published
04 Jan 2024

Sustainable Energy Fuels, 2024,8, 649-656

A nanoscale surface engineered magneto-mechano-triboelectric nanogenerator enabled by reliable pattern replication for self-powered IoT devices

S. Pattipaka, T. W. Park, Y. M. Bae, Y. Na, K. Chung, K. Park, J. Ryu, W. I. Park and G. Hwang, Sustainable Energy Fuels, 2024, 8, 649 DOI: 10.1039/D3SE01206A

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