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受临时纹身启发、基于超薄聚氨酯-聚乙烯醇薄膜的皮肤适应性表皮电极。

Temporary Tattoo-Inspired, Skin-Adaptable Epidermal Electrode from an Ultrathin PU-PVA Film.

作者信息

Ye Xinyuan, Li Leqi, Wang Zonglei, Wang Yuli, Yang Jiawei, Zheng Meiqiong, Wang Mingzhe, Ji Zichong, Lin Shihong, Zhang Yujie, Luo Jian, Yi Junhong, Zhou Pengcheng, Cao Xuanwen, He Xuezhong, Wang Yan

机构信息

Department of Chemical Engineering, Guangdong Technion-Israel Institute of Technology, 241 Daxue Road, Shantou, Guangdong 515063, China.

The Wolfson Department of Chemical Engineering, Technion-Israel Institute of Technology, Haifa 3200003, Israel.

出版信息

ACS Sens. 2025 Aug 22;10(8):6218-6230. doi: 10.1021/acssensors.5c02018. Epub 2025 Jul 30.

Abstract

Long-term, high-fidelity electrophysiological monitoring requires epidermal electrodes that simultaneously offer conformability, breathability, and mechanical durability─attributes rarely achieved in current designs─through a scalable, simple, and low-cost fabrication strategy. We report a 5.2-μm-thick, transparent, air- and vapor-permeable "tattoo" electrode that adheres to the human skin through water-activated hydrogen bonding provided by a NaCl/glycerol/water hydrating solution, echoing the mechanism of temporary tattoos. The fabrication process is easy, efficient, and scalable. The device consists of a poly(vinyl alcohol) matrix reinforced by an electrospun polyurethane nanomesh, yielding an interfacial area adhesion energy of 2060.8 μJ cm, and a low skin contact impedance of 21.0 kΩ at 100 Hz. Unlike conventional hydrogel or dry electrodes, our design needs no external adhesive layer, resists dehydration, and withstands everyday mechanical stress while remaining comfortable to wear. It exhibits an air permeance of 0.94 cm cm s cmHg, a water-vapor transmission rate of 1856.5 ± 36.9 g m day, and survives 1000 cycles of 100% uniaxial strain. The electrode also retains >81.4 ± 1.7% of its initial water content after 7 days of storage and maintains its stretchability, adhesion, skin contact impedance, and conductivity even after 60 days. These properties enable reliable, minimized motion artifact acquisition of biosignals during vigorous activities and extended daily use. Finally, we demonstrate wireless surface electromyogram that tracks muscle-recruitment dynamics during strength-training and rehabilitation exercises, including push-ups and climbing, underscoring the potential of the tattoo electrode for real-world wearable health monitoring.

摘要

长期、高保真的电生理监测需要表皮电极,这种电极要能同时具备贴合性、透气性和机械耐久性——这些特性在当前设计中很少能实现——通过一种可扩展、简单且低成本的制造策略来达成。我们报告了一种厚度为5.2μm的透明、透气且透水汽的“纹身”电极,它通过由氯化钠/甘油/水保湿溶液提供的水激活氢键附着在人体皮肤上,这与临时纹身的机制相呼应。制造过程简便、高效且可扩展。该器件由一个通过电纺聚氨酯纳米网增强的聚乙烯醇基质组成,产生的界面面积粘附能为2060.8μJ/cm²,在100Hz时皮肤接触阻抗低至21.0kΩ。与传统水凝胶或干电极不同,我们的设计无需外部粘合剂层,能抵抗脱水,承受日常机械应力,同时佩戴起来仍很舒适。它的透气率为0.94cm³/cm²·s·cmHg,水汽透过率为1856.5±36.9g/m²·天,能经受1000次100%单轴应变循环。该电极在储存7天后仍保留其初始含水量的81.4±1.7%以上,即使在60天后仍能保持其拉伸性、粘附性、皮肤接触阻抗和导电性。这些特性使得在剧烈活动和日常长期使用期间能够可靠地、将生物信号的运动伪影最小化地采集。最后,我们展示了无线表面肌电图,它能跟踪力量训练和康复锻炼(包括俯卧撑和攀爬)期间的肌肉募集动态,突出了纹身电极在实际可穿戴健康监测中的潜力。

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