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Reconfigurable Swarms of Nematic Colloids Controlled by Photoactivated Surface Patterns

机译:由光活化表面图案控制的向列胶体的可重构群

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Different phoretic driving mechanisms have been proposed for the transport of solid or liquid microscopic inclusions in integrated chemical processes. It is now shown that a substrate that was chemically modified with photosensitive self-assembled monolayers enables the direct control of the assembly and transport of large ensembles of micrometer-sized particles and drops that were dispersed in a thin layer of anisotropic fluid. This strategy separates particle driving, which was realized by AC electrophoresis, and steering, which was achieved by elastic modulation of the nematic host fluid. Inclusions respond individually or in collective modes following arbitrary reconfigurable paths that were imprinted by irradiation with UV or blue light. Relying solely on generic material properties, the proposed procedure is versatile enough for the development of applications that involve either inanimate or living materials.
机译:已经提出了用于集成化学过程中固体或液体微观夹杂物的运输的不同的电泳驱动机制。现在显示出,用光敏性自组装单分子层化学修饰的基材能够直接控制分散在各向异性流体薄层中的大尺寸微米级颗粒和液滴的组装和运输。该策略将通过交流电泳实现的粒子驱动与通过向列主流体的弹性调制实现的转向分开。夹杂物会通过紫外线或蓝光照射产生的任意可重配置路径,以单独或集体方式响应。完全依靠通用的材料特性,所提出的方法对于开发涉及无生命或有生命的材料的应用程序具有足够的通用性。

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