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交叉电场和磁场下的取向排列:氘核磁共振研究

Director alignment by crossed electric and magnetic fields: a deuterium NMR study.

作者信息

Hamasuna D, Luckhurst G R, Sugimura A, Timimi B A, Zimmermann H

机构信息

Department of Information Systems Engineering, Osaka Sangyo University, 3-1-1 Nakagaito, Daito-Shi, Osaka 574-8530, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jul;84(1 Pt 1):011705. doi: 10.1103/PhysRevE.84.011705. Epub 2011 Jul 15.

Abstract

The static director distribution in thin nematic liquid crystal cells, subject to both electric and magnetic fields, has been investigated using a combination of deuterium nuclear magnetic resonance (NMR) spectroscopy and continuum theory in terms of the director distribution function, which gives the probability density for finding the director at a given orientation. A series of deuterium NMR spectra for the nematic liquid crystal, 4-pentyl-d(2)-4'-cyanobiphenyl deuteriated in the α position of the pentyl chain were acquired as a function of the applied electric field. This powerful experimental technique allowed us to observe uniform and nonuniform director alignment depending on the angle between the two fields and their relative strength. On the basis of the detailed experimental results, we have explored the factors that influence the nature of both the uniform and the nonuniform director distributions. We have discussed the questions that are raised by our attempt to understand the static director distribution as a function of the angle between the two fields. We have discovered that the alignment of the director at the surface of the Teflon spacers is essential in addition to the random variation in the cell thickness in order to account for the static director distribution determined from the NMR spectra.

摘要

利用氘核磁共振(NMR)光谱和连续统理论相结合的方法,根据指向矢分布函数,对同时受到电场和磁场作用的向列型液晶薄盒中的静态指向矢分布进行了研究,该指向矢分布函数给出了在给定取向找到指向矢的概率密度。作为外加电场的函数,获取了一系列在戊基链α位置氘化的向列型液晶4-戊基-d(2)-4'-氰基联苯的氘NMR光谱。这种强大的实验技术使我们能够根据两个场之间的夹角及其相对强度观察到均匀和非均匀的指向矢排列。基于详细的实验结果,我们探讨了影响均匀和非均匀指向矢分布性质的因素。我们讨论了在试图将静态指向矢分布理解为两个场之间夹角的函数时所产生的问题。我们发现,除了盒厚的随机变化外,聚四氟乙烯间隔物表面指向矢的排列对于解释由NMR光谱确定的静态指向矢分布也是至关重要的。

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