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刺激响应型液态金属和液晶网络驱动器用于可编程软体机器人。

Stimulus-driven liquid metal and liquid crystal network actuators for programmable soft robotics.

机构信息

School of Materials Science and Engineering, Tianjin University, Tianjin 300350, P. R. China.

Advanced Materials and Liquid Crystal Institute and Chemical Physics Interdisciplinary Program, Kent State University, Kent, OH 44242, USA.

出版信息

Mater Horiz. 2021 Aug 31;8(9):2475-2484. doi: 10.1039/d1mh00623a.

Abstract

Sophisticated soft matter engineering has been endorsed as an emerging paradigm for developing untethered soft robots with built-in electronic functions and biomimetic adaptation capacities. However, the integration of flexible electronic components into soft robotic actuators is challenging due to strain mismatch and material incompatibilities. Herein, we report a general strategy to integrate electrically conductive liquid metals (LMs) and shape-morphing liquid crystal networks (LCNs) towards multifunctional and programmable soft robotics. A unique colloidal LM ink with superior adhesion and photothermal conversion efficiency was judiciously designed and fabricated by ultrasonicating LMs and miniature carboxylated gold nanorods (MiniGNR-COOH) in an aqueous suspension of biological bacterial cellulose. The designed nanocellulose-based colloidal LM ink is used for shape-deformable and electrically conductive LM-LCN soft robots that can be electro- and photo-thermally actuated. As proof-of-concept demonstrations, we present a light-fueled soft oscillator, an inchworm-inspired soft crawler and programmable robotic Shadow Play exhibiting multifunctional controllability. The strategy disclosed here could open up a new technological arena for advanced multifunctional soft materials with potential utility in bioinspired soft machines, integrated soft electronics, human-computer interaction and beyond.

摘要

复杂的软物质工程被认为是开发具有内置电子功能和仿生自适应能力的无束缚软机器人的新兴范例。然而,由于应变不匹配和材料不相容性,将柔性电子元件集成到软机器人致动器中具有挑战性。在此,我们报告了一种将导电液态金属(LM)和形状变形液晶网络(LCN)集成到多功能和可编程软机器人中的通用策略。通过在生物细菌纤维素的水性悬浮液中超声处理 LM 和微型羧基化金纳米棒(MiniGNR-COOH),巧妙地设计并制造了具有优异附着力和光热转换效率的独特胶体 LM 油墨。所设计的基于纳米纤维素的胶体 LM 油墨用于形状可变形和导电的 LM-LCN 软机器人,这些软机器人可以进行电和光热驱动。作为概念验证演示,我们展示了一个光燃料软振荡器、一个受尺蠖启发的软爬行器和具有多功能可控性的可编程机器人皮影戏。这里所揭示的策略为先进的多功能软材料开辟了一个新的技术领域,这些软材料在仿生软机器、集成软电子产品、人机交互等领域具有潜在的应用价值。

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