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再次扭转:液晶弹性体微柱中动态且可逆可控的手性

Twist again: Dynamically and reversibly controllable chirality in liquid crystalline elastomer microposts.

作者信息

Waters James T, Li Shucong, Yao Yuxing, Lerch Michael M, Aizenberg Michael, Aizenberg Joanna, Balazs Anna C

机构信息

Chemical Engineering Department, University of Pittsburgh, Pittsburgh, PA 15261, USA.

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Sci Adv. 2020 Mar 27;6(13):eaay5349. doi: 10.1126/sciadv.aay5349. eCollection 2020 Mar.

Abstract

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.

摘要

光响应性液晶弹性体(LCEs)是软机器人的理想致动器,因为可以利用其光致宏观形状变化来执行特定的关节运动。然而,传统的LCEs通常不会表现出执行复杂动作所需的复杂弯曲和扭转模式。在这里,我们对LCE微柱进行建模,这些微柱包含沿磁编程向列指向矢取向的侧链液晶基元和偶氮苯交联剂,它们决定了受照微柱的变形。当将向列指向矢方向从垂直改变为水平时,微柱的弯曲分别从趋光变为避光。此外,建模和后续实验均表明,当指向矢倾斜45°时,最初的非手性微柱会可逆地扭曲成右手或左手手性结构,这由入射光的角度控制。我们利用这种光致手性来设计“嵌合体”微柱(包含两个具有不同指向矢方向的区域),其表现出同时的弯曲和扭转,模仿人类肌肉骨骼系统的运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecfd/7101207/f748b0d75830/aay5349-F1.jpg

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