TY - CHAP
T1 - Triboelectric Sensors for IoT and Wearable Applications
AU - Zhang, Zixuan
AU - Guo, Xinge
AU - Wen, Feng
AU - Shi, Qiongfeng
AU - He, Tianyiyi
AU - Dong, Bowei
AU - Lee, Chengkuo
N1 - Publisher Copyright:
© 2023 Elsevier Ltd. unless otherwise stated. All rights reserved.
PY - 2022/1/1
Y1 - 2022/1/1
N2 - With the development trends of the wearable electronic devices in miniaturization, lightweight, and portability, a sustainable power providing solution is needed to meet the requirement of the coming intelligent world. Triboelectric nanogenerators have become a promising energy harvesting technology during the past few years with significant development across the world, due to their diverse flexible/stretchable configurations, no material limitation, and high output performance, which also can transfer surrounding environmental mechanical stimuli into electricity effectively. Triboelectric nanogenerators also can actively function as self-powered sensors and actuators to detect, monitor, interact and respond to the ambient changes induced by environment or human, which can be key components to achieve sustainable functional systems. Therefore, the application of triboelectric nanogenerators on wearable electronics yields a highly advanced technology to realize self-powered, flexible, and smart functional systems. In this review, the progress development of triboelectric nanogenerators and wearable electronics technology is firstly reviewed. Then various human machine interaction systems enabled by the integration of triboelectric nanogenerators and IoT technology are presented to show the feasibility to achieve sustainable functional systems. Furthermore, the perspective of future research direction of triboelectric nanogenerators is proposed from hybrid sensors and photonics integrated systems.
AB - With the development trends of the wearable electronic devices in miniaturization, lightweight, and portability, a sustainable power providing solution is needed to meet the requirement of the coming intelligent world. Triboelectric nanogenerators have become a promising energy harvesting technology during the past few years with significant development across the world, due to their diverse flexible/stretchable configurations, no material limitation, and high output performance, which also can transfer surrounding environmental mechanical stimuli into electricity effectively. Triboelectric nanogenerators also can actively function as self-powered sensors and actuators to detect, monitor, interact and respond to the ambient changes induced by environment or human, which can be key components to achieve sustainable functional systems. Therefore, the application of triboelectric nanogenerators on wearable electronics yields a highly advanced technology to realize self-powered, flexible, and smart functional systems. In this review, the progress development of triboelectric nanogenerators and wearable electronics technology is firstly reviewed. Then various human machine interaction systems enabled by the integration of triboelectric nanogenerators and IoT technology are presented to show the feasibility to achieve sustainable functional systems. Furthermore, the perspective of future research direction of triboelectric nanogenerators is proposed from hybrid sensors and photonics integrated systems.
KW - Energy harvester
KW - Fifth generation (5G)
KW - Gas sensor
KW - Human machine interface
KW - Hybrid sensor
KW - Implanted sensor
KW - Internet of Things (IoT)
KW - Nanophotonic
KW - Physical sensor
KW - Self-powered sensor
KW - Textile
KW - Triboelectric nanogenerator (TENG)
KW - Wearable sensor
UR - https://www.scopus.com/pages/publications/85218296794
U2 - 10.1016/B978-0-12-822548-6.00006-6
DO - 10.1016/B978-0-12-822548-6.00006-6
M3 - 章节
AN - SCOPUS:85218296794
SN - 9780128225486
SP - V3:235-V3:257
BT - Encyclopedia of Sensors and Biosensors, First Edition, Four Volume Set
PB - Elsevier
ER -