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首页> 外文期刊>ACS applied materials & interfaces >Highly Transparent, Self-Healable, and Adhesive Organogels for Bio-Inspired Intelligent Ionic Skins
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Highly Transparent, Self-Healable, and Adhesive Organogels for Bio-Inspired Intelligent Ionic Skins

机译:用于生物启发性智能离子皮肤的高度透明,自我康复和粘合器有机杆菌

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摘要

Development of intelligent adaptable materials with unprecedented sensitivity that can mimic the tactile sensing functions of natural skin is a major driving force in the realization of artificial intelligence. Herein, we judiciously designed and synthesized a series of lauryl acrylate-based polymeric organogels with high transparency, mechanical adaptability, self-healing properties, and adhesive capability. Moreover, a robust capacitive sensor with high sensitivity (0.293 kPa(-1) ) was developed by sandwiching the prepared soft, adaptable organogels between two tough conductive hydrogels and then used to monitor various human motions such as finger stretching, wrist bending, and throat movement during chewing. Interestingly, the resulting capacitive sensor could also function as prosthetic skin on a pneumatic soft artificial hand, enabling intelligent haptic perception. The research disclosed herein is expected to provide insights into the rational design of artificial human-like skins with unprecedented functionalities.
机译:智能适应性材料的开发具有前所未有的敏感性,可以模仿天然皮肤的触感功能是实现人工智能的主要推动力。在此,我们明显地设计和合成了一系列的基于月桂基丙烯酸酯基聚合物有机凝胶,具有高透明度,机械适应性,自愈性能和粘合剂能力。此外,通过夹在两个坚硬的导电水凝胶之间的制备的软,适应性有机凝胶中,开发了具有高灵敏度(0.293kPa(-1))的鲁棒电容传感器,然后用于监测各种人类运动,例如手指伸展,腕部弯曲和喉部咀嚼过程中的运动。有趣的是,所得到的电容传感器还可以在气动软性人工手上用作假体皮肤,从而实现智能触觉感知。本文公开的研究预计将向具有前所未有的功能的人工人类皮肤的理性设计提供有利。

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