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用光驱动的自组装向列胶体马达。

Self-assembled nematic colloidal motors powered by light.

机构信息

Department of Physics, University of Colorado, Boulder, CO, 80309, USA.

Soft Materials Research Center and Materials Science and Engineering Program, Department of Electrical, Computer, and Energy Engineering, University of Colorado, Boulder, CO, 80309, USA.

出版信息

Nat Commun. 2018 Nov 28;9(1):5040. doi: 10.1038/s41467-018-07518-x.

Abstract

Biological motors are marvels of nature that inspire creation of their synthetic counterparts with comparable nanoscale dimensions, high efficiency and diverse functions. Molecular motors have been synthesized, but obtaining nanomotors through self-assembly remains challenging. Here we describe a self-assembled colloidal motor with a repetitive light-driven rotation of transparent micro-particles immersed in a liquid crystal and powered by a continuous exposure to unstructured ~1 nW light. A monolayer of azobenzene molecules defines how the liquid crystal's optical axis mechanically couples to the particle's surface, as well as how they jointly rotate as the light's polarization changes. The rotating particle twists the liquid crystal, which changes polarization of traversing light. The resulting feedback mechanism yields a continuous opto-mechanical cycle and drives the unidirectional particle spinning, with handedness and frequency robustly controlled by polarization and intensity of light. Our findings may lead to opto-mechanical devices and colloidal machines compatible with liquid crystal display technology.

摘要

生物马达是大自然的奇迹,它们激发了具有可比纳米尺寸、高效率和多种功能的合成对应物的创造。已经合成了分子马达,但通过自组装获得纳米马达仍然具有挑战性。在这里,我们描述了一种自组装胶体马达,它可以在浸入液晶的透明微颗粒中进行重复的光驱动旋转,并通过持续暴露于无结构的~1nW 光来提供动力。单层的偶氮苯分子定义了液晶的光轴如何机械地与颗粒表面耦合,以及它们如何在光的偏振变化时一起旋转。旋转的颗粒扭曲了液晶,从而改变了穿透光的偏振。由此产生的反馈机制产生了一个连续的光机械循环,并驱动了单向颗粒旋转,其手性和频率通过光的偏振和强度稳健地控制。我们的发现可能会导致与液晶显示技术兼容的光机械装置和胶体机器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02da/6261955/03d7e5bc1c2c/41467_2018_7518_Fig1_HTML.jpg

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