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用于可拉伸和自修复电子器件的液态金属-弹性体导体的定向组装

Directed Assembly of Liquid Metal-Elastomer Conductors for Stretchable and Self-Healing Electronics.

作者信息

Krisnadi Febby, Nguyen Linh Lan, Ma Jinwoo, Kulkarni Mohit Rameshchandra, Mathews Nripan, Dickey Michael D

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Ave, #01-30, Block N4.1, Singapore, 639798, Singapore.

Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore, 637371, Singapore.

出版信息

Adv Mater. 2020 Jul;32(30):e2001642. doi: 10.1002/adma.202001642. Epub 2020 Jun 21.

Abstract

Growing interest in soft robotics, stretchable electronics, and electronic skins has created demand for soft, compliant, and stretchable electrodes and interconnects. Here, dielectrophoresis (DEP) is used to assemble, align, and sinter eutectic gallium indium (EGaIn) microdroplets in uncured poly(dimethylsiloxane) (PDMS) to form electrically conducting microwires. There are several noteworthy aspects of this approach. 1) Generally, EGaIn droplets in silicone at loadings approaching 90 wt% remain insulating and form a conductive network only when subjected to sintering. Here, DEP facilitates assembly of EGaIn droplets into conductive microwires at loadings as low as 10 wt%. 2) DEP is done in silicone for the first time, enabling the microwires to be cured in a stretchable matrix. 3) Liquid EGaIn droplets sinter during DEP to form a stretchable metallic microwire that retains its shape after curing the silicone. 4) Use of liquid metal eliminates the issue of compliance mismatch observed in soft polymers with solid fillers. 5) The silicone-EGaIn "ink" can be assembled by DEP within the crevices of severely damaged wires to create stretchable interconnects that heal the damage mechanically and electrically. The DEP process of this unique set of materials is characterized and the interesting attributes enabled by such liquid microwires are demonstrated.

摘要

对软机器人技术、可拉伸电子器件和电子皮肤的兴趣与日俱增,这引发了对柔软、柔顺且可拉伸的电极及互连的需求。在此,介电泳(DEP)被用于在未固化的聚二甲基硅氧烷(PDMS)中组装、排列并烧结共晶镓铟(EGaIn)微滴,以形成导电微线。这种方法有几个值得注意的方面。1)一般来说,硅树脂中负载量接近90 wt%的EGaIn微滴仍保持绝缘状态,只有在进行烧结时才会形成导电网络。在此,DEP有助于在低至10 wt%的负载量下将EGaIn微滴组装成导电微线。2)DEP首次在硅树脂中进行,使得微线能够在可拉伸基质中固化。3)液态EGaIn微滴在DEP过程中烧结,形成可拉伸的金属微线,在硅树脂固化后仍能保持其形状。4)使用液态金属消除了在含有固体填料的软聚合物中观察到的柔顺性不匹配问题。5)硅树脂 - EGaIn“墨水”可通过DEP在严重受损导线的缝隙内进行组装,以创建可拉伸的互连,从而在机械和电气方面修复损伤。对这组独特材料的DEP过程进行了表征,并展示了此类液态微线所具备的有趣特性。

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