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具有液态金属网格图案化单电极的可拉伸弹性摩擦纳米发电机,用于可穿戴能量收集器件。

Stretchable and Elastic Triboelectric Nanogenerator with Liquid-Metal Grid-Patterned Single Electrode for Wearable Energy-Harvesting Devices.

机构信息

Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, 54896, Republic of Korea.

School of Chemical Engineering, Sungkyunkwan University (SKKU), Suwon, 16419, Republic of Korea.

出版信息

Macromol Rapid Commun. 2024 Nov;45(21):e2400321. doi: 10.1002/marc.202400321. Epub 2024 Sep 16.

Abstract

Triboelectric nanogenerators (TENGs) have garnered significant attention as efficient energy-harvesting systems for sustainable energy sources in the field of self-powered wearable devices. Various conductive materials are used to build wearable devices, among which, gallium-based liquid metal (LM) is a preferred electrode owing to its fluidity and metallic conductivity even when strained. In this study, a stretchable, elastic, and wearable triboelectric nanogenerator is designed using a single electrode fabricated by embedding LM grid patterns into a stretchable silicone substrate through a two-step spray-coating process. Contrary to conventional double-electrode TENG that is challenging to integrate to human body, the LM grid-patterned single-electrode TENG (LMG-SETENG) has a simplified design and provides more flexibility. The LMG-SETENG can generate voltages of up to 100 V via triboelectrification upon contact with the human body, even under various degrees of strain, owing to the fluidity of the LM electrode. The generated energy can be utilized as a sustainable energy source to power various small appliances. Moreover, the proposed LMG-SETENG can be utilized in soft robotics, electronic skin, and healthcare devices.

摘要

摩擦纳米发电机(TENG)作为自供电可穿戴设备领域中可持续能源的高效能量收集系统引起了广泛关注。各种导电材料被用于制造可穿戴设备,其中,镓基液态金属(LM)因其流动性和金属导电性而成为首选电极,即使在应变时也是如此。在这项研究中,通过两步喷涂工艺,将 LM 网格图案嵌入到可拉伸硅酮基底中,设计了一种可拉伸、弹性和可穿戴的摩擦纳米发电机。与传统的难以与人体集成的双电极 TENG 不同,LM 网格图案化单电极 TENG(LMG-SETENG)具有简化的设计和更高的灵活性。由于 LM 电极的流动性,LMG-SETENG 在与人接触时通过摩擦起电可产生高达 100 V 的电压,即使在各种应变程度下也是如此。产生的能量可用作可持续能源为各种小家电供电。此外,所提出的 LMG-SETENG 可用于软机器人、电子皮肤和医疗保健设备。

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