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表面形态对受限纳米级液晶薄膜的锚定及电光动力学的影响。

Effects of surface morphology on the anchoring and electrooptical dynamics of confined nanoscale liquid crystalline films.

作者信息

Noble Alison R, Kwon Hye J, Nuzzo Ralph G

机构信息

Department of Chemistry and the Frederick Seitz Materials Research Laboratory, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

J Am Chem Soc. 2002 Dec 18;124(50):15020-9. doi: 10.1021/ja021001p.

Abstract

The orientation and dynamics of two 40-nm thick films of 4-n-pentyl-4'-cyanobiphenyl (5CB), a nematic liquid crystal, have been studied using step-scan Fourier transform infrared spectroscopy (FTIR). The films are confined in nanocavities bounded by an interdigitated electrode array (IDA) patterned on a zinc selenide (ZnSe) substrate. The effects of the ZnSe surface morphology (specifically, two variations of nanometer-scale corrugations obtained by mechanical polishing) on the initial ordering and reorientation dynamics of the electric-field-induced Freedericksz transition are presented here. The interaction of the 5CB with ZnSe surfaces bearing a spicular corrugation induces a homeotropic (surface normal) alignment of the film confined in the cavity. Alternately, when ZnSe is polished to generate fine grooves along the surface, a planar alignment is promoted in the liquid crystalline film. Time-resolved FTIR studies that enable the direct measurement of the rate constants for the electric-field-induced orientation and thermal relaxation reveal that the dynamic transitions of the two film structures are significantly different. These measurements quantitatively demonstrate the strong effects of surface morphology on the anchoring, order, and dynamics of liquid crystalline thin films.

摘要

利用步进扫描傅里叶变换红外光谱(FTIR)研究了向列型液晶4-正戊基-4'-氰基联苯(5CB)的两个40纳米厚薄膜的取向和动力学。这些薄膜被限制在由图案化在硒化锌(ZnSe)衬底上的叉指电极阵列(IDA)界定的纳米腔中。本文展示了ZnSe表面形态(具体而言,通过机械抛光获得的两种纳米级波纹变化)对电场诱导的弗雷德里克斯转变的初始取向和重新取向动力学的影响。5CB与具有针状波纹的ZnSe表面的相互作用会导致限制在腔内的薄膜呈现垂直(表面法线)取向。相反,当ZnSe被抛光以沿表面产生细槽时,液晶薄膜中会促进平面取向。能够直接测量电场诱导取向和热弛豫速率常数的时间分辨FTIR研究表明,两种薄膜结构的动态转变有显著差异。这些测量定量地证明了表面形态对液晶薄膜的锚定、取向和动力学的强烈影响。

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