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[이승구교수연구실] Anisotropic Fluorinated-Elastomer-Blended Micro-Dominoes for Wearable Triboelectric Nanogenerators
작성자 관리자 작성일 2024-11-05 조회수 24

Title

Anisotropic Fluorinated-Elastomer-Blended Micro-Dominoes for Wearable Triboelectric Nanogenerators

Author list

Giwon Lee, Siyoung Lee, Daegun Kim, Su Hyun Kim, Chungryong Choi, Seung Goo Lee*, and Kilwon Cho*

Publication date

2024.08.08

Citation information

Advanced Functional Materials, 34, 2316288 (2024)

Abbreviation of Journal Name

Adv. Funct. Mater.

DOI

https://doi.org/10.1002/adfm.202316288

Graphical Abstract

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Abstract

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Triboelectric nanogenerators (TENGs) have emerged as promising portable and sustainable energy sources in daily life, harvesting energy from human motion, water, and wind. However, they still face limitations in aspects such as contact area, deformability, wettability, and manufacturing method. Here, we present a wearable TENG incorporating an anisotropic domino structure based on a fluorinated elastomer blend. Because of its thin, elongated structure with broad sides, our TENG achieves substantially larger contact areas and high bendability. Introducing a fluorinated elastomer into the polydimethylsiloxane matrix via a simple blending process not only enhances the triboelectric performance but also reduces surface energy and improves the stretchability of elastomers. The anisotropic arrangement of dominoes, in synergy with the fluorinated elastomer, mimics the surface physicochemical properties of natural rice leaves, resulting in anisotropic superhydrophobic wetting behavior with a self-cleaning effect and controlled directional water flow for efficient water energy harvesting. Therefore, our TENG functions as an energy-harvesting leaf that captures energy from wind and water droplets, as well as a wearable energy-harvesting wristband that generates power from human motions such as touching, shaking, and hand washing.