Chen Fan, Zhuang Qiuna, Ding Yichun, Zhang Chi, Song Xian, Chen Zijian, Zhang Yaokang, Mei Quanjin, Zhao Xin, Huang Qiyao, Zheng Zijian
School of Fashion and Textiles, The Hong Kong Polytechnic University, Hong Kong SAR, 999077, China.
Department of Biomedical Engineering, The Hong Kong Polytechnic University, Hong Kong SAR, 999077, China.
Adv Mater. 2023 Dec;35(49):e2305630. doi: 10.1002/adma.202305630. Epub 2023 Oct 27.
Skin electronics provides remarkable opportunities for non-invasive and long-term monitoring of a wide variety of biophysical and physiological signals that are closely related to health, medicine, and human-machine interactions. Nevertheless, conventional skin electronics fabricated on elastic thin films are difficult to adapt to the wet microenvironments of the skin: Elastic thin films are non-permeable, which block the skin perspiration; Elastic thin films are difficult to adhere to wet skin; Most skin electronics are difficult to work underwater. Here, a Wet-Adaptive Electronic Skin (WADE-skin) is reported, which consists of a next-to-skin wet-adhesive fibrous layer, a next-to-air waterproof fibrous layer, and a stretchable and permeable liquid metal electrode layer. While the electronic functionality is determined by the electrode design, this WADE-skin simultaneously offers superb stretchability, wet adhesion, permeability, biocompatibility, and waterproof property. The WADE-skin can rapidly adhere to human skin after contact for a few seconds and stably maintain the adhesion over weeks even under wet conditions, without showing any negative effect to the skin health. The use of WADE-skin is demonstrated for the stable recording of electrocardiogram during intensive sweating as well as underwater activities, and as the strain sensor for the underwater operation of virtual reality-mediated human-machine interactions.
皮肤电子学为无创且长期监测与健康、医学及人机交互密切相关的各种生物物理和生理信号提供了显著机遇。然而,基于弹性薄膜制造的传统皮肤电子学难以适应皮肤的潮湿微环境:弹性薄膜不透水,会阻碍皮肤排汗;弹性薄膜难以粘附在潮湿的皮肤上;大多数皮肤电子学在水下难以工作。在此,报道了一种湿适应性电子皮肤(WADE-skin),它由贴近皮肤的湿粘性纤维层、贴近空气的防水纤维层以及可拉伸且透气的液态金属电极层组成。虽然电子功能由电极设计决定,但这种WADE-skin同时具备出色的拉伸性、湿粘附性、透气性、生物相容性和防水性能。WADE-skin在接触几秒钟后就能迅速粘附在人体皮肤上,即使在潮湿条件下也能在数周内稳定保持粘附,且对皮肤健康无任何负面影响。展示了WADE-skin在大量出汗以及水下活动期间稳定记录心电图的用途,以及作为虚拟现实介导的人机交互水下操作的应变传感器的用途。