Flexible Triboelectric Mechanical Energy Harvesters for Wearable and Self-Powered Sensing Applications: A Review
Manchi Punnarao, Hong-Joon Yoon

TL;DR
This review discusses flexible triboelectric nanogenerators (TENGs) for energy harvesting and self-powered wearable sensors.
Contribution
The paper provides a comprehensive review of flexible TENGs, focusing on their design, fabrication, and applications in wearable and self-powered systems.
Findings
Flexible triboelectric composite films improve TENG electrical output performance.
Combining flexible layers with TENGs enhances sensor characteristics like sensitivity and flexibility.
TENGs are effective for mechanical energy harvesting and powering portable devices.
Abstract
Triboelectric nanogenerators (TENGs) have been gaining significant attention owing to their excellent energy conversion efficiency and their integration towards a large number of practical applications in energy harvesting, wearables, and self-powered sensing. In recent advancements, the utilization of flexible triboelectric composite films can help to enhance the TENG’s electrical output performance, as they possess excellent mechanical and dielectric properties and tunable surface characteristics. Moreover, by combining flexible active layers with triboelectric nanogenerators, the advantages of each component result in sensor devices which offer superior characteristics, including high sensitivity, biocompatibility, less weight, and mechanical flexibility. This review mainly focuses on the applications of TENGs in mechanical energy harvesting, self-powered wearable sensor systems, as…
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Taxonomy
TopicsAdvanced Sensor and Energy Harvesting Materials · Dielectric materials and actuators · Conducting polymers and applications
