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Light-induced manipulation of passive and active microparticles

机译:光诱导的被动和活性微粒的操纵

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We consider sedimented at a solid wall particles that are immersed in water containing small additives of photosensitive ionic surfactants. It is shown that illumination with an appropriate wavelength, a beam intensity profile, shape and size could lead to a variety of dynamic, both unsteady and steady state, configurations of particles. These dynamic, well-controlled and switchable particle patterns at the wall are due to an emerging diffusio-osmotic flow that takes its origin in the adjacent to the wall electrostatic diffuse layer, where the concentration gradients of surfactant are induced by light. The conventional nonporous particles are passive and can move only with already generated flow. However, porous colloids actively participate themselves in the flow generation mechanism at the wall, which also sets their interactions that can be very long ranged. This light-induced diffusio-osmosis opens novel avenues to manipulate colloidal particles and assemble them to various patterns. We show in particular how to create and split optically the confined regions of particles of tunable size and shape, where well-controlled flow-induced forces on the colloids could result in their crystalline packing, formation of dilute lattices of well-separated particles, and other states.
机译:我们考虑沉淀在固体壁颗粒,浸入含有感光性离子表面活性剂的小添加剂的水中。结果表明,适当波长、光束强度分布、形状和尺寸的照明可以导致粒子的各种动态、非稳态和稳态构型。这些动态的、控制良好的、可切换的壁面颗粒模式是由于一种新兴的扩散-渗透流,其起源于相邻的壁面静电扩散层,其中表面活性剂的浓度梯度由光诱导。传统的无孔颗粒是被动的,只能在已经产生流动的情况下移动。然而,多孔胶体积极参与了壁面的流动生成机制,这也决定了它们之间的相互作用可以是非常长的范围。这种光诱导的扩散渗透为操纵胶体颗粒并将其组装成各种图案开辟了新途径。我们特别展示了如何在光学上创建和拆分大小和形状可调的粒子的受限区域,在这些区域中,对胶体的良好控制的流动诱导力可能会导致它们的结晶堆积、形成分离良好的粒子的稀晶格,以及其他状态。

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