Langmuir 2015-04-14

Nematic director reorientation at solid and liquid interfaces under flow: SAXS studies in a microfluidic device.

Bruno F B Silva, Miguel Zepeda-Rosales, Neeraja Venkateswaran, Bretton J Fletcher, Lester G Carter, Tsutomu Matsui, Thomas M Weiss, Jun Han, Youli Li, Ulf Olsson, Cyrus R Safinya

文献索引:Langmuir 31(14) , 4361-71, (2015)

全文:HTML全文

摘要

In this work we investigate the interplay between flow and boundary condition effects on the orientation field of a thermotropic nematic liquid crystal under flow and confinement in a microfluidic device. Two types of experiments were performed using synchrotron small-angle X-ray-scattering (SAXS). In the first, a nematic liquid crystal flows through a square-channel cross section at varying flow rates, while the nematic director orientation projected onto the velocity/velocity gradient plane is measured using a 2D detector. At moderate-to-high flow rates, the nematic director is predominantly aligned in the flow direction, but with a small tilt angle of ∼±11° in the velocity gradient direction. The director tilt angle is constant throughout most of the channel width but switches sign when crossing the center of the channel, in agreement with the Ericksen-Leslie-Parodi (ELP) theory. At low flow rates, boundary conditions begin to dominate, and a flow profile resembling the escaped radial director configuration is observed, where the director is seen to vary more smoothly from the edges (with homeotropic alignment) to the center of the channel. In the second experiment, hydrodynamic focusing is employed to confine the nematic phase into a sheet of liquid sandwiched between two layers of Triton X-100 aqueous solutions. The average nematic director orientation shifts to some extent from the flow direction toward the liquid boundaries, although it remains unclear if one tilt angle is dominant through most of the nematic sheet (with abrupt jumps near the boundaries) or if the tilt angle varies smoothly between two extreme values (∼90 and 0°). The technique presented here could be applied to perform high-throughput measurements for assessing the influence of different surfactants on the orientation of nematic phases and may lead to further improvements in areas such as boundary lubrication and clarifying the nature of defect structures in LC displays.


相关化合物

  • 荧光素
  • 曲拉通X-100
  • 二苯醚
  • 4'-正戊基-4-氰基联...

相关文献:

CPEB1 modulates differentiation of glioma stem cells via downregulation of HES1 and SIRT1 expression.

2014-08-30

[Oncotarget 5(16) , 6756-69, (2014)]

Cell-cell adhesions and cell contractility are upregulated upon desmosome disruption.

2014-01-01

[PLoS ONE 9(7) , e101824, (2014)]

Gene therapy with AAV2-CDNF provides functional benefits in a rat model of Parkinson's disease.

2013-03-01

[Brain Behav. 3(2) , 75-88, (2013)]

Positive feedback regulation of type I IFN production by the IFN-inducible DNA sensor cGAS.

2015-02-15

[J. Immunol. 194(4) , 1545-54, (2015)]

Enhanced Retinal Ganglion Cell Survival in Glaucoma by Hypoxic Postconditioning After Disease Onset.

2015-04-01

[Neurotherapeutics 12(2) , 502-14, (2015)]

更多文献...