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受限向列相液晶中光热驱动的胶体输运

Optothermally driven colloidal transport in a confined nematic liquid crystal.

机构信息

J. Stefan Institute, Jamova 39, SI-1000, Ljubljana, Slovenia.

出版信息

Soft Matter. 2017 Mar 29;13(13):2448-2452. doi: 10.1039/c7sm00136c.

Abstract

We demonstrate transport of microparticles by rapid movement of a laser spot in a thin layer of a nematic liquid crystal. The transport is achieved by fluid flow, caused by two different mechanisms. The thermoviscous expansion effect induces colloidal transport in the direction opposite to the laser movement, whereas thermally induced local melting of the liquid crystal pulls the particles in the direction of the laser movement. We demonstrate control of colloidal transport by changing the speed of the laser trap movement and the laser power. We anticipate that complex optofluidic colloidal transport could be realized in the nematic liquid crystal using a channel-free optofluidic approach.

摘要

我们通过在向列液晶薄层中快速移动激光光斑来演示微颗粒的输运。这种输运是通过两种不同的机制引起的流体流动来实现的。热粘膨胀效应导致胶体在与激光运动相反的方向上输运,而热诱导的液晶局部熔化则将颗粒拉向激光运动的方向。我们通过改变激光陷阱移动速度和激光功率来演示胶体输运的控制。我们预计,使用无通道的光流控方法,可以在向列液晶中实现复杂的光流控胶体输运。

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