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利用交流电场对向列相液晶中碳纤维进行双向旋转控制。

Bidirectional rotation control of a carbon fiber in nematic liquid crystal using AC electric field.

作者信息

Lee Jun-Yong, Yu Jeong-Seon, Kim Jong-Hyun

机构信息

Department of Physics, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon, 34134, Korea.

Institute of Quantum Systems, Chungnam National University, Daejeon, Korea.

出版信息

Sci Rep. 2020 Oct 29;10(1):18650. doi: 10.1038/s41598-020-75644-y.

Abstract

Colloidal particles dispersed in nematic liquid crystals are aligned along the orientation that minimizes the elastic free energy. Through applying an electric field to a nematic colloidal system, the orientation of the director can change. Consequently, colloidal particles realign to minimize the total free energy, which is the sum of the elastic and electric free energies. Herein, we demonstrate that if the preferred rotation directions given by the electric and elastic free energies are different during realignment, the rotation direction of the particle can be controlled by how we apply the electric field. When the strength of the electric field gradually increases, the particles rotate in the same direction as the rotation of the director. However, when a sufficiently high electric field is suddenly applied, the particles rotate in the opposite direction. In this study, we analyzed the effect of free energy on the bidirectional rotation behavior of the particles using a theoretical model. This study provides an effective approach to control the rotational behavior of colloidal particles over a wide-angle range between two orientational local minima.

摘要

分散在向列型液晶中的胶体粒子会沿着使弹性自由能最小化的方向排列。通过对向列型胶体系统施加电场,指向矢的方向会发生改变。因此,胶体粒子会重新排列以最小化总自由能,总自由能是弹性自由能和电自由能之和。在此,我们证明,如果在重新排列过程中电自由能和弹性自由能给出的优先旋转方向不同,粒子的旋转方向可以通过我们施加电场的方式来控制。当电场强度逐渐增加时,粒子会与指向矢的旋转方向相同地旋转。然而,当突然施加足够高的电场时,粒子会向相反方向旋转。在本研究中,我们使用理论模型分析了自由能对粒子双向旋转行为的影响。本研究提供了一种有效的方法来控制胶体粒子在两个取向局部最小值之间的广角范围内的旋转行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b81e/7596724/4f92f6ed9e00/41598_2020_75644_Fig1_HTML.jpg

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