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AC electrokinetic templating of colloidal particle assemblies: Effect of electrohydrodynamic flows

机译:胶体粒子组件的交流电动模板:电动流体流动的影响

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The use of spatially nonuniform electric fields for the contact-free colloidal particle assembly into ordered structures of various length scales is a research area of great interest. In the present work, numerical simulations are undertaken in order to advance our understanding of the physical mechanisms that govern this colloidal assembly process and their relation to the electric field characteristics and colloidal system properties. More specifically, the electric-field driven assembly of colloidal silica (d _p = 0.32 and 2 μm) in DMSO, a near index matching fluid, is studied numerically over a range of voltages and concentration by means of a continuum thermodynamic approach. The equilibrium (u → _f = 0) and nonequilibrium (u → _f ≠ 0) cases were compared to determine whether fluid motion had an effect on the shape and size of assemblies. It was found that the nonequilibrium case was substantially different versus the equilibrium case, in both size and shape of the assembled structure. This dependence was related to the relative magnitudes of the electric-field driven convective motion of particles versus the fluid velocity. Fluid velocity magnitudes on the order of mm/s were predicted for 0.32 μm particles at 1% initial solids content, and the induced fluid velocity was found to be larger at the same voltage/initial volume fraction as the particle size decreased, owing to a larger contribution from entropic forces.
机译:将空间非均匀电场用于无接触胶体粒子组装成各种长度尺度的有序结构是一个非常受关注的研究领域。在当前的工作中,进行了数值模拟,以增进我们对控制该胶体组装过程的物理机制及其与电场特性和胶体系统特性的关系的理解。更具体地说,通过连续热力学方法,在电压和浓度范围内,对DMSO(一种接近折射率匹配的流体)中的胶体二氧化硅(d_p = 0.32和2μm)的电场驱动组件进行了数值研究。比较了平衡(u→_f = 0)和非平衡(u→_f≠0)情况,以确定流体运动是否对组件的形状和大小有影响。发现在组装结构的尺寸和形状上,非平衡情况与平衡情况有很大不同。这种依赖性与电场驱动的粒子对流运动相对于流体速度的相对大小有关。预计在初始固含量为1%的情况下,0.32μm颗粒的流体速度大小为mm / s量级,并且由于相同的电压/初始体积分数,随着颗粒尺寸的减小,诱导的流体速度会变大。熵力的贡献更大。

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