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

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초록

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 mu A), 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. This paper provides a nanoscale surface-replicated magneto-mechano-triboelectric nanogenerator (MMTENG) for demonstration of a self-powered IoT system.

키워드

GENERATOR; INTERNET; THINGS; SOLAR
제목
A nanoscale surface engineered magneto-mechano-triboelectric nanogenerator enabled by reliable pattern replication for self-powered IoT devices
저자
Pattipaka, Srinivas; Park, Tae Wan; Bae, Young Min; Na, Yujin; Chung, Kyeongwoon; Park, Kwi-Il; Ryu, Jungho; Park, Woon Ik; Hwang, Geon-Tae
DOI
10.1039/d3se01206a
발행일
2024-01-30
유형
Article
저널명
SUSTAINABLE ENERGY & FUELS
권
8
호
3
페이지
649 ~ 656