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Mechanoresponsive Polymerized Liquid Metal Networks

机译:机械响应聚合液态金属网络

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摘要

Room-temperature liquid metals, such as nontoxic gallium alloys, show enormous promise to revolutionize stretchable electronics for next-generation soft robotic, e-skin, and wearable technologies. Core-shell particles of liquid metal with surface-bound acrylate ligands are synthesized and polymerized together to create cross-linked particle networks comprising >99.9% liquid metal by weight. When stretched, particles within these polymerized liquid metal networks (Poly-LMNs) rupture and release their liquid metal payload, resulting in a rapid 10(8)-fold increase in the network's conductivity. These networks autonomously form hierarchical structures that mitigate the deleterious effects of strain on electronic performance and give rise to emergent properties. Notable characteristics include nearly constant resistances over large strains, electronic strain memory, and increasing volumetric conductivity with strain to over 20 000 S cm(-1) at >700% elongation. Furthermore, these Poly-LMNs exhibit exceptional performance as stretchable heaters, retaining 96% of their areal power across relevant physiological strains. Remarkable electromechanical properties, responsive behaviors, and facile processing make Poly-LMNs ideal for stretchable power delivery, sensing, and circuitry.
机译:室温液态金属(例如无毒镓合金)显示出巨大的希望,将革命性地扩展可拉伸电子设备,用于下一代软机器人,电子皮肤和可穿戴技术。合成具有表面结合的丙烯酸酯配体的液态金属核-壳颗粒,并将其聚合在一起,以形成按重量计包含> 99.9%液态金属的交联颗粒网络。当拉伸时,这些聚合的液态金属网络(Poly-LMN)中的颗粒破裂并释放出液态金属有效载荷,从而导致网络电导率迅速增加10(8)倍。这些网络自动形成分层结构,这些结构减轻了应变对电子性能的有害影响,并产生了紧急特性。显着的特性包括在大应变下几乎恒定的电阻,电子应变记忆以及在> 700%的伸长率下随应变增加到超过20000 S cm(-1)的体积电导率。此外,这些Poly-LMN作为可拉伸加热器表现出出色的性能,在相关的生理菌株中保留了96%的面功率。 Poly-LMN具有出色的机电性能,响应性能和便捷的处理能力,非常适合可伸缩的功率传输,传感和电路。

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