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用于可穿戴手语解读的高度灵活、透气且用户舒适的全多孔聚合物摩擦电传感器。

Highly Flexible, Breathable, and User-Comfortable All-Porous Polymeric Triboelectric Sensors for Wearable Sign Language Interpretation.

作者信息

Seo Min-Kyu, Jang A-Rang, Pandey Puran, Sohn Jung Inn

机构信息

Division of Physics and Semiconductor Science, Dongguk University-Seoul, Seoul 04620, Republic of Korea.

Division of Electrical, Electronic and Control Engineering, Kongju National University, Cheonan 31080, Republic of Korea.

出版信息

ACS Sens. 2025 Aug 22;10(8):5981-5988. doi: 10.1021/acssensors.5c01341. Epub 2025 Jul 21.

Abstract

We present a fully porous Ecoflex-based triboelectric nanogenerator (FPE-TENG) engineered for flexible, breathable, and cost-effective self-powered wearable applications. The FPE-TENG employs a unique design composed of entirely porous materials, with porous Ecoflex as the electrification material and porous Ecoflex/carbon nanotubes (CNTs) as the electrode. The fabrication of porous Ecoflex utilizes an innovative methodology that employs a sacrificial brown sugar template, resulting in a highly porous structure that enhances breathability and user comfort for prolonged wearable applications. The FPE-TENG operates in single-electrode mode, generating electrical outputs from human motion with consistent voltage and current over various low frequencies. The FPE-TENG exhibits exceptional mechanical robustness, enduring repeated mechanical deformation and surpassing 12,000 operational cycles without any decrease in electrical performance. The FPE-TENG offers superior moisture dissipation and thermal management capabilities that alleviate common wearability issues, such as sweat accumulation and skin discomfort. Additionally, the real-time demonstration of self-powered sign language interpretation, facilitated by detecting joint movements and generating corresponding electrical signals for text conversion, has been successfully implemented to improve communication for individuals with hearing impairments. With its straightforward fabrication process, cost-effectiveness, mechanical durability, and reliable electrical performance, the FPE-TENG represents a promising solution for future self-powered wearable electronics, energy harvesting, and human-machine interaction systems.

摘要

我们展示了一种基于全多孔Ecoflex的摩擦电纳米发电机(FPE-TENG),其专为灵活、透气且经济高效的自供电可穿戴应用而设计。FPE-TENG采用了一种独特的设计,由完全多孔材料组成,以多孔Ecoflex作为起电材料,多孔Ecoflex/碳纳米管(CNT)作为电极。多孔Ecoflex的制造采用了一种创新方法,即使用牺牲性红糖模板,从而形成高度多孔的结构,增强透气性并提高长时间可穿戴应用的用户舒适度。FPE-TENG以单电极模式运行,通过人体运动产生电输出,在各种低频下具有稳定的电压和电流。FPE-TENG表现出卓越的机械鲁棒性,能承受反复的机械变形,超过12000个运行周期而电气性能无任何下降。FPE-TENG具有出色的水分散发和热管理能力,可缓解常见的可穿戴问题,如汗水积聚和皮肤不适。此外,通过检测关节运动并生成相应电信号进行文本转换,成功实现了自供电手语翻译的实时演示,以改善听力障碍者的交流。凭借其简单的制造工艺、成本效益、机械耐久性和可靠的电气性能,FPE-TENG为未来的自供电可穿戴电子设备、能量收集和人机交互系统提供了一个有前景的解决方案。

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