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首页> 外文期刊>Science Advances >Twist again: Dynamically and reversibly controllable chirality in liquid crystalline elastomer microposts
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Twist again: Dynamically and reversibly controllable chirality in liquid crystalline elastomer microposts

机译:再次扭曲:在液晶弹性体微孔中动态和可逆可控的手术

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摘要

Photoresponsive liquid crystalline elastomers (LCEs) constitute ideal actuators for soft robots because their light-induced macroscopic shape changes can be harnessed to perform specific articulated motions. Conventional LCEs, however, do not typically exhibit complex modes of bending and twisting necessary to perform sophisticated maneuvers. Here, we model LCE microposts encompassing side-chain mesogens oriented along a magnetically programmed nematic director, and azobenzene cross-linkers, which determine the deformations of illuminated posts. On altering the nematic director orientation from vertical to horizontal, the post’s bending respectively changes from light-seeking to light-avoiding. Moreover, both modeling and subsequent experiments show that with the director tilted at 45°, the initially achiral post reversibly twists into a right- or left-handed chiral structure, controlled by the angle of incident light. We exploit this photoinduced chirality to design “chimera” posts (encompassing two regions with distinct director orientations) that exhibit simultaneous bending and twisting, mimicking motions exhibited by the human musculoskeletal system.
机译:光响应液晶弹性体(LCE)构成软机器人的理想致动器,因为它们的光引起的宏观形状变化可以利用以进行特定的铰接运动。然而,传统的LCE通常不具有所需的弯曲和扭曲的复杂模式,以进行复杂的机动。这里,我们模拟了沿着磁性编程的列目典礼定向的侧链蛋白质和偶氮苯交联剂的模型模型,其确定了照明柱的变形。在改变垂直于水平的向内导演方向改变典型,柱的弯曲分别从寻求光避免变化。此外,建模和随后的实验表明,由于导向器在45°倾斜,最初的成立后的柱可逆地扭转到由入射光角度控制的右手或左手手性结构中。我们利用这款光抑制的手段来设计“嵌合”帖子(包括两个具有不同导演方向的地区),其表现出同时弯曲和扭曲,模拟人肌肉骨骼系统展示的运动。

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