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用于可拉伸水下电子皮肤贴片的高透气/透水土层状网格结构。

Highly Air/Water-Permeable Hierarchical Mesh Architectures for Stretchable Underwater Electronic Skin Patches.

机构信息

Department SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University (SKKU), Suwon 16419, Republic of Korea.

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

出版信息

ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14425-14432. doi: 10.1021/acsami.9b23400. Epub 2020 Mar 13.

Abstract

The development of an electronic skin patch that can be used in underwater environments can be considered essential for fabricating long-term wearable devices and biomedical applications. Herein, we report a stretchable conductive polymer composite (CPC) patch on which an octopus sucker-inspired structure is formed to conformally contact with biological skin that may be rough and wet. The patch is patterned with a hexagonal mesh structure for water and air permeability. The patch films are suited for a strain sensor or a stretchable electrode as their piezoresistive responses can be controlled by changing the concentration of conductive fillers to polymeric polyurethane. The CPC patch with a hexagonal mesh pattern (HMP) can be easily stretched for a strain sensor and is insensitive to tensile strain, making the patch suitable as a stretchable electrode. Furthermore, the octopus-like structures formed on the skeleton of the HMP allow the patch to maintain strong adhesion underwater by easily draining excess water trapped between the patch and skin. The sensor patch (<50 wt % carbon nanotubes (CNTs)) can sensitively detect the bending strain of a finger, and the electrode patch (50 wt % CNTs with addition of Ag flakes) can stably measure biosignals (e.g., electrocardiogram signals) under both dry and wet conditions owing to the octopus-like structure and HMP.

摘要

开发可用于水下环境的电子皮肤贴片对于制造长期可穿戴设备和生物医学应用至关重要。在此,我们报告了一种可拉伸的导电聚合物复合材料 (CPC) 贴片,其表面形成了章鱼吸盘启发的结构,可与可能粗糙和湿润的生物皮肤贴合。该贴片采用六边形网格结构进行水和空气渗透。贴片薄膜适用于应变传感器或可拉伸电极,因为其压阻响应可以通过改变导电填料与聚合物聚氨酯的浓度来控制。具有六边形网格图案 (HMP) 的 CPC 贴片可以轻松拉伸用作应变传感器,并且对拉伸应变不敏感,因此贴片适合用作可拉伸电极。此外,在 HMP 的骨架上形成的章鱼状结构允许贴片通过轻松排出被困在贴片和皮肤之间的多余水来在水下保持强附着力。传感器贴片(<50wt%碳纳米管(CNT))可以敏感地检测手指的弯曲应变,而电极贴片(50wt%CNT 并添加 Ag 薄片)可以由于章鱼状结构和 HMP 而在干燥和湿润条件下稳定地测量生物信号(例如心电图信号)。

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