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一种用于多功能电子皮肤的自支撑、导体暴露、可拉伸、超薄且可回收的折纸结构液态金属纸。

A Self-Supporting, Conductor-Exposing, Stretchable, Ultrathin, and Recyclable Kirigami-Structured Liquid Metal Paper for Multifunctional E-Skin.

作者信息

Li Xing, Zhu Pengcheng, Zhang Shichuan, Wang Xiangcheng, Luo Xuepeng, Leng Ziwei, Zhou Hao, Pan Zhifeng, Mao Yanchao

机构信息

Key Laboratory of Materials Physics, Ministry of Education, School of Physics and Microelectronics, Zhengzhou University, Zhengzhou 450001, China.

出版信息

ACS Nano. 2022 Apr 26;16(4):5909-5919. doi: 10.1021/acsnano.1c11096. Epub 2022 Mar 21.

Abstract

Electronic skin (E-skin) is a crucial seamless human-machine interface (HMI), holding promise in healthcare monitoring and personal electronics. Liquid metal (LM) has been recognized as an ideal electrode material to fabricate E-skins. However, conventional sealed LM electrodes cannot expose the LM layer for direct contact with the skin resulting in the low performance of electrophysiological monitoring. Furthermore, traditional printed LM electrodes are difficult to transfer or recycle, and fractures easily occur under stretching of the substrate. Here, we report a kind of LM electrode that we call a kirigami-structured LM paper (KLP), which is self-supporting, conductor-exposing, stretchable, ultrathin, and recyclable for multifunctional E-skin. The KLP is fabricated by the kirigami paper cutting art with three types of structures including uniaxial, biaxial, and square spiral. The KLP can act as an E-skin to acquire high-quality electrophysiological signals, such as electroencephalogram (EEG), electrocardiogram (ECG), and electromyogram (EMG). Upon integration with a triboelectric nanogenerator (TENG), the KLP can also operate as a self-powered E-skin. On the basis of the self-powered E-skin, we further developed a smart dialing communication system, which is applied on human skin to call a cellphone. Compared with conventional sealed or printed LM electrodes, the KLP can simultaneously achieve self-supporting, conductor-exposing, stretchable, ultrathin, and recyclable features. Such KLP offers potential for E-skins in healthcare monitoring and intelligent control, as well as smart robots, virtual reality, on-skin personal electronics, .

摘要

电子皮肤(E-skin)是一种至关重要的无缝人机接口(HMI),在医疗监测和个人电子产品领域具有广阔前景。液态金属(LM)已被公认为制造电子皮肤的理想电极材料。然而,传统的密封液态金属电极无法使液态金属层暴露以直接与皮肤接触,导致电生理监测性能低下。此外,传统的印刷液态金属电极难以转移或回收,并且在基板拉伸时容易断裂。在此,我们报道了一种我们称之为折纸结构液态金属纸(KLP)的液态金属电极,它具有自支撑、导体暴露、可拉伸、超薄且可回收的特点,适用于多功能电子皮肤。KLP是通过折纸剪纸艺术制造的,具有单轴、双轴和方形螺旋三种结构类型。KLP可以作为电子皮肤获取高质量的电生理信号,如脑电图(EEG)、心电图(ECG)和肌电图(EMG)。与摩擦纳米发电机(TENG)集成后,KLP还可以作为自供电电子皮肤工作。基于这种自供电电子皮肤,我们进一步开发了一种智能拨号通信系统,该系统应用于人体皮肤以拨打手机。与传统的密封或印刷液态金属电极相比,KLP可以同时实现自支撑、导体暴露、可拉伸、超薄和可回收的特性。这种KLP在医疗监测、智能控制以及智能机器人、虚拟现实、皮肤穿戴式个人电子产品等领域为电子皮肤提供了潜力。

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