Kristiansen Kai, Zeng Hongbo, Zappone Bruno, Israelachvili Jacob N
§Department of Chemical and Materials Engineering, University of Alberta, Edmonton, AB T6G 2V4, Canada.
∥Consiglio Nazionale delle Ricerche, Istituto di Nanotecnologia (CNR-Nanotech) Unità di Cosenza, LICRYL c/o Dipartimento di Fisica, Università della Calabria , Cubo 33/B, 87036 Rende (CS), Italy.
Langmuir. 2015 Apr 7;31(13):3965-72. doi: 10.1021/acs.langmuir.5b00144. Epub 2015 Mar 24.
Using a surface forces apparatus (SFA), we studied the forces associated with the reorientation of molecules of a common nematic thermotropic liquid crystal, 4'-n-pentyl-4-cyanobiphenyl (5CB), confined between two conducting (silver) surfaces and its optical behavior under the influence of electric fields with varying magnitudes and field directions. A transient attractive force was observed due to partial reorientations of the liquid crystal molecules and the flow of free ions, in addition to a stronger constant capacitance attraction between the silver surfaces. At the same time, the optical properties of the liquid crystals were observed perpendicular to the silver surfaces. Observations of shifts and fluctuations of the extraordinary wave of the (multiple beam) interference fringes measure the refractive index of the director component parallel to the surface, which is sensitive to tilt motion (or reorientation) of the liquid crystal molecules that provided details of the anisotropic orientations of the molecules and domains. Any lateral differential refractive index change is easily observed by optical microscopy. The optical microscope imaging showed that the changes in the optical properties are due to convective flow at domain boundaries of the liquid crystal molecules (and possible free ions) between the two charged surfaces. At low electric fields, propagation of domain boundaries was observed, while at higher electric fields, hexagonal patterns of flowing molecules were observed. The interplay of the force measurements and optical observations reveal a complex dynamic behavior of liquid crystals subjected to varying electric fields in confined spaces.
我们使用表面力仪(SFA),研究了一种常见的向列型热致液晶4'-正戊基-4-氰基联苯(5CB)分子重新定向相关的力,该液晶被限制在两个导电(银)表面之间,以及在不同大小和场方向的电场影响下其光学行为。除了银表面之间更强的恒定电容吸引力外,由于液晶分子的部分重新定向和自由离子的流动,还观察到了一种瞬态吸引力。同时,在垂直于银表面的方向上观察液晶的光学性质。对(多光束)干涉条纹的非常波的位移和波动的观察测量了平行于表面的指向矢分量的折射率,该折射率对液晶分子的倾斜运动(或重新定向)敏感,从而提供了分子和畴的各向异性取向的细节。通过光学显微镜很容易观察到任何横向微分折射率变化。光学显微镜成像表明,光学性质的变化是由于两个带电表面之间液晶分子(以及可能的自由离子)畴边界处的对流流动所致。在低电场下,观察到畴边界的传播,而在高电场下,观察到流动分子的六边形图案。力测量和光学观察的相互作用揭示了受限空间中液晶在变化电场作用下的复杂动态行为。