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按需动态手性选择的花冠状微柱阵列。

On-Demand Dynamic Chirality Selection in Flower Corolla-like Micropillar Arrays.

机构信息

The Research Institute of Industrial Science, Hanyang University, Seoul 04763, Republic of Korea.

Program in Environmental and Polymer Engineering, Inha University, Incheon 22212, Republic of Korea.

出版信息

ACS Nano. 2022 Nov 22;16(11):18101-18109. doi: 10.1021/acsnano.2c04825. Epub 2022 Oct 25.

Abstract

Chiral morphology has been intensively studied in various fields including biology, organic chemistry, pharmaceuticals, and optics. On-demand and dynamic chiral inversion not only cannot be realized in most intrinsically chiral materials but also has mostly been limited to chemical or light-induced methods. Herein, we report reversible real-time magneto-mechanical chiral inversion of a three-dimensional (3D) micropillar array between achiral, clockwise, and counterclockwise chiral arrangements. Inspired by the flower corolla, achiral arrays of five and six radially arranged semicylindrical micropillars were employed as model systems to investigate the dynamic symmetry properties of arrays consisting of odd and even numbers of micropillars, respectively. Each micropillar underwent twisting actuation with a different twisting angle depending on the angle with the magnetic field direction and magnetic flux density, thereby collectively changing the chirality from the achiral to chiral state. Importantly, the morphological handedness of the micropillars was inverted within a few seconds by manipulating the direction of the magnetic field. A chiral morphology consisting of magnetically twisted micropillars was shape-fixed by the introduction of a polymeric binder. This binder could be simply washed off to return the shape-fixed twisted micropillars to their initial straight state. Magnetically programmable and reproducible 3D flower corolla-like micropillar arrays are expected to expand the potential of shape-reconfigurable devices that require real-time chiral manipulation in ambient environments.

摘要

手性形态在包括生物学、有机化学、制药和光学在内的各个领域都得到了深入研究。在大多数固有手性材料中,不仅不能按需实现动态手性反转,而且大多局限于化学或光诱导方法。在此,我们报告了一种三维(3D)微柱阵列在非手性、顺时针和逆时针手性排列之间的可逆实时磁机械手性反转。受花朵花瓣的启发,采用了 5 个和 6 个径向排列的半圆形微柱的非手性阵列作为模型系统,分别研究了由奇数和偶数个微柱组成的阵列的动态对称性质。每个微柱都经历了不同的扭转运动,扭转角度取决于与磁场方向和磁通量密度的角度,从而共同将手性从非手性状态转变为手性状态。重要的是,通过操纵磁场的方向,可以在几秒钟内将微柱的形态手性反转。通过引入聚合物粘合剂,由磁扭转微柱组成的手性形态被固定形状。简单地将该粘合剂洗掉就可以将固定形状的扭曲微柱恢复到初始的直状态。可通过磁场编程和可重复的 3D 花朵花瓣状微柱阵列有望扩展在环境中需要实时手性操作的形状可重构设备的潜力。

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