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限制在纳米多孔氧化铝中的8OCB和8CB液晶:限制对结构和动力学的影响。

8OCB and 8CB Liquid Crystals Confined in Nanoporous Alumina: Effect of Confinement on the Structure and Dynamics.

作者信息

Selevou Aristoula, Papamokos George, Steinhart Martin, Floudas George

机构信息

Department of Physics, University of Ioannina , P.O. Box 1186, 451 10 Ioannina, Greece.

Institut für Chemie neuer Materialien, Universität Osnabrück , D-49069 Osnabrück, Germany.

出版信息

J Phys Chem B. 2017 Aug 3;121(30):7382-7394. doi: 10.1021/acs.jpcb.7b05042. Epub 2017 Jul 20.

Abstract

The effect of oxygen substitution is studied in two homologous compounds of n-cyanobiphenyls with n = 8 in the bulk and under confinement within self-ordered nanoporous alumina (AAO). Oxygen substitution in 8OCB increases the dipole moment and stabilizes the crystalline, smectic, and nematic phases to higher temperatures relative to 8CB. Within their smectic- A (SmA) phase both 8CB and 8OCB behave as weak viscoelastic solids with low shear moduli reflecting the underlying supramolecular defect structure. Dielectric spectroscopy assisted by DFT calculations identified strong dipolar associations within the isotropic phases characterized by a Kirkwood-Fröhlich interaction parameter, g ∼ 0.36. Dielectric spectroscopy further identified a slow process (∼ kHz) of low dielectric strength. The proximity of this process to the rheology time scale suggests as common origin a cooperative relaxation of the defect structure. Confinement alters the phase diagram by stabilizing certain crystalline phases and by reducing the N-I transition temperature in agreement with surface tension effects. However, the N-I transition seems to retain its first order character. Surface treatment with n-decyltrichlorosilane results in destabilization of the SmA phase at the expense of the N phase. This is consistent with a picture of surface anchored LC molecules at the pore walls that stabilize the nematic phase.

摘要

研究了氧取代对两种n = 8的正氰基联苯同系物在本体状态以及在自组装纳米多孔氧化铝(AAO)受限环境中的影响。相对于8CB,8OCB中的氧取代增加了偶极矩,并使结晶相、近晶相和向列相在更高温度下保持稳定。在它们的近晶A(SmA)相中,8CB和8OCB均表现为具有低剪切模量的弱粘弹性固体,这反映了潜在的超分子缺陷结构。由DFT计算辅助的介电谱表明,在各向同性相中存在以Kirkwood-Fröhlich相互作用参数g ∼ 0.36为特征的强偶极缔合。介电谱进一步确定了一个低介电强度的缓慢过程(∼ kHz)。该过程与流变时间尺度相近,表明缺陷结构的协同弛豫是其共同起源。受限作用通过稳定某些结晶相并降低N-I转变温度改变了相图,这与表面张力效应一致。然而,N-I转变似乎保留了其一级特征。用正癸基三氯硅烷进行表面处理导致SmA相失稳,以向列相为代价。这与孔壁处表面锚定的液晶分子稳定向列相的情况一致。

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