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Direct measurement of fluid mechanical properties in micro space: Liquid crystal orientation under sheer

Author(s)
Soga, IDhinojwala, AGranick, S
Issued Date
1999-10
DOI
10.1143/JJAP.38.6118
URI
https://scholarworks.unist.ac.kr/handle/201301/47404
Fulltext
https://iopscience.iop.org/article/10.1143/JJAP.38.6118
Citation
JAPANESE JOURNAL OF APPLIED PHYSICS PART 1-REGULAR PAPERS SHORT NOTES & REVIEW PAPERS, v.38, no.10, pp.6118 - 6122
Abstract
The sheer-induced molecular orientation of a nematic liquid crystal, 5CB (4-pentyl-4'-cyanobiphenyl) was studied ill a newly-developed apparatus in which the liquid crystal was confined between optical windows at a film thickness that is continuously variable. The molecular orientation was measured in situ during shear in the presence and absence of DC electrical bias between the two surfaces. In this preliminary study we present findings for a spacing of 10 mu m, which is comparable to the spacing of actual liquid crystal display technology Fourier transform infrared time resolved spectroscopy (FTIR-TRS) synchronized with the shear motion provided the molecular orientation as a function of time during the shear cycle. Only a slight orientation along the shear direction was found in the isotropic state but, in the homeotropic state, the molecular orientations in response to shear reflected a competition process between orientation in orthogonal directions. Shear promoted orientation parallel to the confining plates, and a DC bias voltage promoted orientation perpendicular to the confining plates.
Publisher
INST PURE APPLIED PHYSICS
ISSN
0021-4922
Keyword (Author)
liquid crystalconfined spacemechanical propertiesorientationshear
Keyword
RESOLVED FOURIER SPECTROSCOPYSYNCHROTRON X-RAYREORIENTATION DYNAMICSPHASE-TRANSITIONSHEAR RESPONSESURFACEFLOWVISCOSITYAPPARATUSCELLS

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