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Leaf-inspired multiresponsive MXene-based actuator for programmable smart devices

机译:基于叶的多响应MXene执行器用于可编程智能设备

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摘要

Natural leaves, with elaborate architectures and functional components, harvest and convert solar energy into chemical fuels that can be converted into energy based on photosynthesis. The energy produced leads to work done that inspired many autonomous systems such as light-triggered motion. On the basis of this nature-inspired phenomenon, we report an unprecedented bilayer-structured actuator based on MXene (Ti3C2Tx)–cellulose composites (MXCC) and polycarbonate membrane, which mimic not only the sophisticated leaf structure but also the energy-harvesting and conversion capabilities. The bilayer actuator features multiresponsiveness, low-power actuation, fast actuation speed, large-shape deformation, programmable adaptability, robust stability, and low-cost facile fabrication, which are highly desirable for modern soft actuator systems. We believe that these adaptive soft systems are attractive in a wide range of revolutionary technologies such as soft robots, smart switch, information encryption, infrared dynamic display, camouflage, and temperature regulation, as well as human-machine interface such as haptics.
机译:具有精心设计的架构和功能组件的天然树叶可将太阳能收集并转化为化学燃料,可通过光合作用将其转化为能量。产生的能量导致完成的工作激发了许多自主系统,例如光触发运动。基于这种自然现象,我们报道了一种前所未有的双层结构执行器,该执行器基于MXene(Ti3C2Tx)-纤维素复合材料(MXCC)和聚碳酸酯膜,不仅模仿了复杂的叶片结构,而且还模仿了能量收集和转换能力。双层执行器具有多响应,低功率执行,快速执行速度,大形状变形,可编程适应性,鲁棒稳定性和低成本简便制造的特点,这对于现代软执行器系统是非常需要的。我们相信,这些自适应软系统在诸如软机器人,智能开关,信息加密,红外动态显示,伪装和温度调节以及人机界面(如触觉系统)等广泛的革命性技术中具有吸引力。

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