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首页> 外文期刊>Angewandte Chemie >Selective Decrosslinking in Liquid Crystal Polymer Actuators for Optical Reconfiguration of Origami and Light-Fueled Locomotion
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Selective Decrosslinking in Liquid Crystal Polymer Actuators for Optical Reconfiguration of Origami and Light-Fueled Locomotion

机译:用于光学重新配置折纸和光燃料运动的液晶聚合物致动器中的选择性曲线

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摘要

The ability to optically reconfigure an existing actuator of a liquid crystal polymer network (LCN) so that it can display a new actuation behavior or function is highly desired in developing materials for soft robotics applications. Demonstrated here is a powerful approach relying on selective polymer chain decrosslinking in a LCN actuator with uniaxial LC alignment. Using an anthracene-containing LCN, spatially controlled optical decrosslinking can be realized through photocleavage of anthracene dimers under 254 nm UV light, which alters the distribution of actuation (crosslinked) and non-actuation (decrosslinked) domains and thus determines the actuation behavior upon order-disorder phase transitions. Based on this mechanism, a single actuator having a flat shape can be reconfigured in an on-demand manner to exhibit reversible shape transformation such as self-folding into origami three-dimensional structures. Moreover, using a dye-doped LCN actuator, a light-fueled microwalker can be optically reconfigured to adopt different locomotion behaviors, changing from moving in the laser scanning direction to moving in the opposite direction.
机译:光学地重新配置液晶聚合物网络(LCN)的现有致动器的能力,使得它可以在开发软机器人应用中的开发材料中显示出新的致动行为或功能。这里证明的是一种强大的方法,依赖于具有单轴LC对准的LCN致动器中的选择性聚合物链速度。使用含蒽的LCN,通过在254nm UV光下的蒽二聚物的光咬合可以实现空间控制的光学速度,这改变了致动(交联)和非致动(逐行链接)域的分布,从而在顺序上确定致动行为-DisOrder阶段转换。基于该机制,可以以按需方式重新配置具有平坦形状的单个致动器,以表现出可逆形状变换,例如自折叠成折纸三维结构。此外,使用染料掺杂的LCN致动器,可以光学燃料微粉用作光学地重新配置以采用不同的运动行为,从而改变在激光扫描方向上以沿相反方向移动。

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