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通过主客体桥联制备用于印刷和应变激活可拉伸电极的粘弹性水基金属乳液凝胶

Viscoelastic Metal-in-Water Emulsion Gel via Host-Guest Bridging for Printed and Strain-Activated Stretchable Electrodes.

作者信息

Wang Qi, Ji Xinyi, Liu Xue, Liu Yang, Liang Jiajie

机构信息

School of Materials Science and Engineering, National Institute for Advanced Materials, Nankai University, Tianjin 300350, P.R. China.

College of Light Industry Science and Engineering, Tianjin University of Science and Technology, Tianjin 300457, P.R. China.

出版信息

ACS Nano. 2022 Aug 23;16(8):12677-12685. doi: 10.1021/acsnano.2c04299. Epub 2022 Aug 4.

Abstract

Stretchable conductive electrodes that can be made by printing technology with high resolution is desired for preparing wearable electronics. Printable inks composed of liquid metals are ideal candidates for these applications, but their practical applications are limited by their low stability, poor printability, and low conductivity. Here, thixotropic metal-in-water (M/W) emulsion gels (MWEGs) were designed and developed by stabilizing and bridging liquid metal droplets (LMDs) via a host-guest polymer. In the MWEGs, the hydrophilic main chain of the host-guest polymers emulsified and stabilized LMDs via coordination bonds. The grafted cyclodextrin and adamantane groups formed dynamic inclusion complexes to bridge two neighboring LMDs, leading to the formation of a dynamically cross-linked network of LMDs in the aqueous phase. The MWEGs exhibited viscoelastic and shear-thinning behavior, making them ideal for direct three-dimensional (3D) and screen printing with a high resolution (∼65 μm) to assemble complex patterns consisting of ∼95 wt % liquid metal. When stretching the printed patterns, strong host-guest interactions guaranteed that the entire droplet network was cross-linked, while the brittle oxide shell of the droplets ruptured, releasing the liquid metal core and allowing it to fuse into continuous conductive pathways under an ultralow critical strain (<1.5%). This strain-activated conductivity exceeded 15800 S/cm under a large strain of 800% and exhibited long-term cyclic stability and robustness.

摘要

制备可穿戴电子产品需要能够通过高分辨率印刷技术制造的可拉伸导电电极。由液态金属组成的可印刷油墨是这些应用的理想候选材料,但其实际应用受到稳定性低、可印刷性差和导电性低的限制。在此,通过主客体聚合物稳定和桥接液态金属微滴(LMD),设计并开发了触变水基金属(M/W)乳液凝胶(MWEG)。在MWEG中,主客体聚合物的亲水性主链通过配位键乳化并稳定LMD。接枝的环糊精和金刚烷基团形成动态包合物以桥接两个相邻的LMD,导致在水相中形成LMD的动态交联网络。MWEG表现出粘弹性和剪切变稀行为,使其非常适合以高分辨率(约65μm)进行直接三维(3D)和丝网印刷,以组装由约95 wt%液态金属组成的复杂图案。当拉伸印刷图案时,强大的主客体相互作用确保整个微滴网络交联,而微滴的脆性氧化壳破裂,释放液态金属核并使其在超低临界应变(<1.5%)下熔合成连续的导电通路。在800%的大应变下,这种应变激活的电导率超过15800 S/cm,并表现出长期的循环稳定性和鲁棒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1a3/9413406/181988b2c15e/nn2c04299_0001.jpg

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