咖啡环效应诱导高分辨率可拉伸生物电极液态金属选择性润湿

IF 8.2 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Jianhui Chen, Gongwei Tian, Dan Yang, Cuiyuan Liang, Hua Liu, Ruiwen Tian, Weihong Lu, Yan Liu* and Dianpeng Qi*, 
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引用次数: 0

摘要

液态金属(LM)由于其特殊的可变形性、优异的导电性、生物相容性和环境稳定性,在可拉伸生物电子器件中表现出巨大的潜力。然而,它们的高表面能给制造高分辨率和多通道生物电极带来了挑战。在本研究中,通过咖啡环效应诱导银NPs排列,并利用LM在银NPs上的选择性润湿,制备了高分辨率(10 μm)和多通道(16通道)的LM生物电极。该生物电极具有优异的拉伸导电性(600%应变)和循环稳定性(在100%应变下循环1 × 104次)。制备的多通道电极阵列的记录位点被导电离子凝胶包裹,显著降低了界面阻抗(1 kHz时为4.14 kΩ),提高了电极的长期稳定性(35天),能够获得高质量的电生理信号。此外,生物电极已成功应用于人体运动检测、手写识别和焦耳加热。这项研究为制造高分辨率和高可拉伸电极提供了一种有前途的策略,在柔性电子领域具有巨大的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Coffee Ring Effect Induced Selective Wetting of Liquid Metal for High-Resolution Stretchable Bioelectrodes

Coffee Ring Effect Induced Selective Wetting of Liquid Metal for High-Resolution Stretchable Bioelectrodes

Coffee Ring Effect Induced Selective Wetting of Liquid Metal for High-Resolution Stretchable Bioelectrodes

Liquid metals (LM) exhibit great potential in stretchable bioelectronic devices due to their exceptional deformability, excellent conductivity, biocompatibility, and environmental stability. However, their high surface energy poses challenges for fabricating high-resolution and multichannel bioelectrodes. In this study, high-resolution (10 μm) and multichannel (16-channel) LM bioelectrodes were prepared by inducing the alignment of Ag NPs through the coffee ring effect and utilizing the selective wetting of LM on Ag NPs. The bioelectrodes exhibit excellent tensile conductivity (600% strain) and cyclic stability (1 × 104 cycles in 100% strain). The recording sites of the prepared multichannel electrode arrays were encapsulated with conductive ionic gel, which significantly reduces interfacial impedance (4.14 kΩ at 1 kHz) and enhances the long-term stability of the electrodes (35 days), enabling acquisition of high-quality electrophysiological signals. Additionally, the bioelectrodes have been successfully applied in human motion detection, handwriting recognition, and Joule heating. This study provides a promising strategy for fabricating high-resolution and highly stretchable electrodes with enormous potential for application in flexible electronics.

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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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