论文标题

列液晶的设计以控制微观动力学

Design of nematic liquid crystals to control microscale dynamics

论文作者

Lavrentovich, Oleg D.

论文摘要

小颗粒的动力学,包括游泳细菌和无生命的胶体球,已经使科学家着迷了几个世纪。如果可以学习如何控制和简化其混乱运动,那将在诸如将存储或环境能量转换为系统运动,微型机器人和物质运输等领域中开放技术机会。该概述通过用各向异性液体(列明液晶体)代替各向同性介质(例如水)来命令微观动力学。定向顺序会带来新的动态效应,例如粒子样孤立波的传播。这些效果中的许多仍在等待其详细的数学描述。通过使用等离子体的元脉冲光电定位,可以将列表导演模式化为预先设计的结构,这些结构通过液晶启用液晶的非线性电动器来控制无生命的颗粒的动力学。此外,液晶的等离子体模式使人们可以指挥游泳细菌的动力学,引导其轨迹,游泳的极性以及在太空中的浓度。图案主管设计也可以扩展到液晶弹性体,在这种情况下,导演梯度定义了弹性体涂层的动态曲线。这些系统中的一些构成了一个实验游乐场,用于探索非平衡的活动物质,其中活动水平,定向顺序和对齐方式都可以彼此独立控制。

Dynamics of small particles, both living such as swimming bacteria and inanimate, such as colloidal spheres, has fascinated scientists for centuries. If one could learn how to control and streamline their chaotic motion, that would open technological opportunities in areas such as the transformation of stored or environmental energy into systematic motion, micro-robotics, and transport of matter at the microscale. This overview presents an approach to command microscale dynamics by replacing an isotropic medium such as water with an anisotropic fluid, a nematic liquid crystal. Orientational order leads to new dynamic effects, such as propagation of particle-like solitary waves. Many of these effects are still awaiting their detailed mathematical description. By using plasmonic metamask photoalignment, the nematic director can be patterned into predesigned structures that control dynamics of inanimate particles through the liquid crystal enabled nonlinear electrokinetics. Moreover, plasmonic patterning of liquid crystals allows one to command the dynamics of swimming bacteria, guiding their trajectories, polarity of swimming, and concentration in space. The patterned director design can also be extended to liquid crystal elastomers, in which case the director gradients define the dynamic profile of elastomer coatings. Some of these systems form an experimental playground for the exploration of out-of-equilibrium active matter, in which the levels of activity, degree of orientational order and patterns of alignment can all be controlled independently of each other.

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