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A four-blade light-driven plastic mill based on hydrazone liquid-crystal networks

机译:一种基于腙液晶网络的四叶片光驱动塑料厂

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摘要

The first light-driven plastic mill is developed, which converts the incoming light directly into a continuous rotation. This device is composed of four blades made of hydrazone-based liquid crystal polymer films able to bend under focused light irradiation and to create a force causing the rotation of the mill. The mechanism of motion originates from the fast photo-thermal isomerization around the C=N bond of hydrazones. We show that by accelerating the rate of the thermal Z to E back-isomerization of hydrazones, macroscopic deformation with fast strain rate can be obtained. The rapid motion of the film is the key factor in obtaining the continuous rotatory motion of the mill. These results broaden the range of molecular switches available for macroscopic motion of light-driven organic devices and offer new insights for single-step energy conversion in soft robotics and automated systems. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:开发了第一灯驱动塑料磨机,其将进入的光直接转换成连续旋转。 该装置由能够在聚焦光照射下弯曲的腙基液晶聚合物膜制成的四个叶片组成,并产生导致研磨机旋转的力。 运动机制来自腙的C = N键周围的快速光热异构化。 我们表明,通过加速含有快速应变速率的热Z至e背异构化的热Z速率,可以获得快速应变率的宏观变形。 薄膜的快速运动是获得研磨机的连续旋转运动的关键因素。 这些结果拓宽了光驱动有机器件的宏观运动的分子开关的范围,并为软机器人和自动化系统中的单步能量转换提供了新的见解。 (c)2017年作者。 elsevier有限公司出版

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