Transparent and Efficient Wood-Based Triboelectric Nanogenerators for Energy Harvesting and Self-Powered Sensing
Ting Cheng, Kunli Cao, Yidan Jing, Hongyan Wang, Yan Wu

TL;DR
Researchers developed a transparent, wood-based energy-harvesting device that is efficient, durable, and aesthetically pleasing.
Contribution
The novel transparent wood-based TENG combines high triboelectric performance with optical transparency and wood aesthetics.
Findings
The TW-TENG achieved an open-circuit voltage of ~127 V, a 530% improvement over natural wood.
The device demonstrated durability with stable performance over 10,000 working cycles.
It achieved an optical transmittance of 88.8% while preserving wood's natural texture.
Abstract
Wood possesses several advantageous qualities including innocuity, low cost, aesthetic appeal, and excellent biocompatibility, and its naturally abundant functional groups and diverse structural forms facilitate functionalization modification. As the most sustainable bio-based material, the combination of wood with triboelectric nanogenerators (TENGs) stands poised to significantly advance the cause of green sustainable production while mitigating the escalating challenges of energy consumption. However, the inherent weak polarizability of natural wood limits its development for TENGs. Herein, we present the pioneering development of a flexible transparent wood-based triboelectric nanogenerator (TW-TENG) combining excellent triboelectrical properties, optical properties, and wood aesthetics through sodium chlorite delignification and epoxy resin impregnation. Thanks to the strong…
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Taxonomy
TopicsGeotechnical and Geomechanical Engineering · Tunneling and Rock Mechanics · Mechanics and Biomechanics Studies
