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用于多模块传感器系统的3D打印印章实现的自修复水凝胶-液态金属复合平台。

Self-Healable Hydrogel-Liquid Metal Composite Platform Enabled by a 3D Printed Stamp for a Multimodular Sensor System.

作者信息

Choi Yoon Young, Ho Dong Hae, Cho Jeong Ho

机构信息

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

Department of Chemical and Biomolecular Engineering , Yonsei University , Seoul 03722 , Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 26;12(8):9824-9832. doi: 10.1021/acsami.9b22676. Epub 2020 Feb 11.

Abstract

Hydrogels and liquid metals have been emerging as potential materials for use in self-healing electronics. This paper presents a simple fabrication procedure for a custom-designed hydrogel-liquid metal composite and its various applications. The hydrogel is patterned using three-dimensional printed molds for creating an electrical pathway, which is subsequently filled with liquid metal. The lifetime and self-healing property of the hydrogel improve drastically through coating of its surface with a moisture protectant layer and via the formation of an oxidized layer of liquid metal, respectively. Three joined units of the resulting hydrogel-liquid metal composite are successfully applied as self-healable electrodes in a customizable multimodular sensor system consisting of a photoresistor, a thermistor, and a tilt switch. The composite is also used as an electrode for biosignal (electromyogram, electrocardiogram, and electrodermal activity) detection, and its sensing ability is found to be comparable to that of a conventional Ag/AgCl electrode. The demonstrated hydrogel-liquid metal composite provides wide scope for researchers to achieve practical advances in self-healing electronics.

摘要

水凝胶和液态金属已成为用于自修复电子器件的潜在材料。本文介绍了一种定制设计的水凝胶-液态金属复合材料的简单制造工艺及其各种应用。使用三维打印模具对水凝胶进行图案化处理以创建电气通路,随后用液态金属填充该通路。水凝胶的寿命和自修复性能分别通过用防潮层涂覆其表面和通过形成液态金属氧化层而得到显著改善。所得水凝胶-液态金属复合材料的三个连接单元成功应用于由光电电阻器、热敏电阻器和倾斜开关组成的可定制多模块传感器系统中的自修复电极。该复合材料还用作生物信号(肌电图、心电图和皮肤电活动)检测的电极,并且发现其传感能力与传统的Ag/AgCl电极相当。所展示的水凝胶-液态金属复合材料为研究人员在自修复电子器件方面取得实际进展提供了广阔的空间。

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