Poddar Antarip, Dhar Jayabrata, Chakraborty Suman
Department of Mechanical Engineering, Indian Institute of Technology Kharagpur, Kharagpur-721302, India.
Phys Rev E. 2017 Jul;96(1-1):013114. doi: 10.1103/PhysRevE.96.013114. Epub 2017 Jul 24.
Advent of nematic liquid crystal flows has attracted renewed attention in view of microfluidic transport phenomena. Among various transport processes, electro-osmosis stands as one of the efficient flow actuation mechanisms through narrow confinements. In the present study, we explore the electrically actuated flow of an ordered nematic fluid with ionic inclusions, taking into account the influences from surface-induced elasticity and electrical double layer (EDL) phenomena. Toward this, we devise the coupled flow governing equations from fundamental free-energy analysis, considering the contributions from first- and second-order elastic, dielectric, flexoelectric, charged surface polarization, ionic and entropic energies. The present study focuses on the influence of surface charge and elasticity effects in the resulting linear electro-osmosis through a slit-type microchannel whose surfaces are chemically treated to display a homeotropic-type weak anchoring state. An optical periodic stripe configuration of the nematic director has been observed, especially for higher electric fields, wherein the Ericksen number for the dynamic study is restricted to the order of unity. Contrary to the isotropic electrolytes, the EDL potential in this case was found to be dependent on the external field strength. Through a systematic investigation, we brought out the fact that the wavelength of the oscillating patterns is dictated mainly by the external field, while the amplitude depends on most of the physical variables ranging from the anchoring strength and the flexoelectric coefficients to the surface charge density and electrical double layer thickness.
鉴于微流体传输现象,向列型液晶流的出现引起了新的关注。在各种传输过程中,电渗是通过狭窄通道的高效流动驱动机制之一。在本研究中,我们考虑表面诱导弹性和电双层(EDL)现象的影响,探索含有离子夹杂物的有序向列型流体的电驱动流动。为此,我们从基本自由能分析出发,考虑一阶和二阶弹性、介电、挠曲电、带电表面极化、离子和熵能的贡献,设计了耦合流动控制方程。本研究重点关注表面电荷和弹性效应在通过狭缝型微通道产生的线性电渗中的影响,该微通道的表面经过化学处理以呈现垂直排列型弱锚定状态。已观察到向列型指向矢的光学周期性条纹配置,特别是对于较高电场,其中用于动态研究的埃里克森数限制在单位量级。与各向同性电解质相反,在这种情况下发现EDL电位取决于外部场强。通过系统研究,我们揭示了振荡图案的波长主要由外部场决定,而振幅则取决于从锚定强度、挠曲电系数到表面电荷密度和电双层厚度等大多数物理变量这一事实。