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纳米可折叠仿皮电子接口,用于检测人体生物电信号。

Nano Foldaway Skin-like E-interface for Detecting Human Bioelectrical Signals.

机构信息

Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing 100084, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 13;13(1):148-154. doi: 10.1021/acsami.0c16981. Epub 2020 Dec 29.

Abstract

Flexible electrodes applied to different positions of the human body to detect bioelectrical signals need to be conductive with respect to both the skin and the external circuit. However, electrodes fabricated with micromachining can only be made conductive on one side, which requires inserting connection wires, thus affecting skin adhesion and leading to a more fragile circuit on the soft substrate. This paper proposes an e-interface designed with an innovative folding transfer process, which can fold nanometer thick electrodes in a macroscopic way. Avoiding the difficulties of fabricating double layer as well as an insulation layer, the e-interface is not only skin-conformable for long-term wear but also provides a stable connecting pad for the subsequent circuit by its double-sided conductivity. The e-interface can be stretched to more than 25% of its original length and achieve electrical stability in the long-term signal acquisition. A responsive ECG signal is obtained by the e-interface, and the signal remains stable during exercise.

摘要

应用于人体不同位置以检测生物电信号的柔性电极需要与皮肤和外部电路都具有导电性。然而,使用微加工制造的电极只能在一侧具有导电性,这就需要插入连接导线,从而影响皮肤附着力,并导致软基底上的电路更加脆弱。本文提出了一种采用创新折叠传输工艺设计的 e-接口,可以宏观地折叠纳米厚的电极。通过避免制造双层和绝缘层的困难,e-接口不仅可以长期贴合皮肤,而且由于其双面导电性,为后续电路提供了稳定的连接垫。e-接口可以拉伸到其原始长度的 25%以上,并在长期信号采集过程中保持电稳定性。e-接口可以获得响应性 ECG 信号,并且在运动过程中信号保持稳定。

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