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化学连接的棒状-盘状介晶液晶的自组装

Self-assembly of chemically linked rod-disc mesogenic liquid crystals.

作者信息

Jeong Kwang-Un, Jing Alexander J, Monsdorf Bart, Graham Matthew J, Harris Frank W, Cheng Stephen Z D

机构信息

Maurice Morton Institute and Department of Polymer Science, The University of Akron, Akron, Ohio 44325-3909, USA.

出版信息

J Phys Chem B. 2007 Feb 1;111(4):767-77. doi: 10.1021/jp066274b.

Abstract

A series of new molecular discs (RDn, here n is the number of carbon atoms between the rod and disc mesogens) was synthesized via the chemical attachment of six cyanobiphenyl calamitic (rod) mesogens (R) linked to the triphenyl discotic (disc) mesogen (D) with a series of six alkyl chain linkages (n = 6-12). In this study, phase structures, transitions, and liquid crystalline (LC) behavior of the RD12 compound with 12 carbon atoms in each alkyl chain linkage between the rod and disc mesogens were investigated. Differential scanning calorimetry, polarized light microscopy, wide-angle X-ray diffraction (WAXD), and selected area electron diffraction (SAED) allowed us to identify three ordered phases below the isotropization temperature: nematic (N) LC and K1 and K2 crystalline phases. On the basis of the structural results obtained via 2D WAXD experiments on oriented samples and SAED experiments on single crystals, the K1 crystalline unit cell was determined to be triclinic with the dimensions of a = 1.36 nm, b = 1.45 nm, c = 2.11 nm, alpha = 85 degrees, beta = 100 degrees, and gamma = 50 degrees. The K2 phase was metastable with respect to the K1 phase. It also possessed a triclinic unit cell with a = 1.40 nm, b = 1.51 nm, c = 1.92 nm, alpha = 87 degrees, beta = 117 degrees, and gamma = 62 degrees. Molecular packing models for the crystalline phases were proposed on the basis of the diffraction results. In the whole range of ordered structures, it was found that RD12 molecular discs are intercalated. Both triphenyl discotic mesogens and cyanobiphenyl calamitic mesogens are completely interdigitated.

摘要

通过将六个氰基联苯棒状(杆状)介晶(R)与三苯基盘状(盘状)介晶(D)通过一系列六个烷基链连接(n = 6 - 12)进行化学连接,合成了一系列新的分子盘(RDn,此处n是杆状和盘状介晶之间的碳原子数)。在本研究中,对杆状和盘状介晶之间每个烷基链连接中有12个碳原子的RD12化合物的相结构、转变和液晶(LC)行为进行了研究。差示扫描量热法、偏光显微镜、广角X射线衍射(WAXD)和选区电子衍射(SAED)使我们能够识别出在各向同性温度以下的三个有序相:向列相(N)液晶相以及K1和K2晶相。基于对取向样品进行的二维WAXD实验和对单晶进行的SAED实验所获得的结构结果,确定K1晶胞为三斜晶系,尺寸为a = 1.36 nm,b = 1.45 nm,c = 2.11 nm,α = 85°,β = 100°,γ = 50°。K2相相对于K1相是亚稳的。它也具有一个三斜晶胞,a = 1.40 nm,b = 1.51 nm,c = 1.92 nm,α = 87°,β = 117°,γ = 62°。基于衍射结果提出了晶相的分子堆积模型。在整个有序结构范围内,发现RD12分子盘是插层的。三苯基盘状介晶和氰基联苯棒状介晶都完全相互穿插。

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