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在点击化学合成的十二烷基化盘状三亚苯液晶中,超分子结构从有序柱状转变为无序柱状,再转变为四方胶束结构。

Supramolecular transformation from ordered columnar to disordered columnar to tetragonal micellar structures in clicked dodeca-alkylated discotic triphenylene liquid crystals.

作者信息

Cho Byoung-Ki, Kim Seung-Hyun

机构信息

Department of Chemistry and Institute of Nanosensor and Biotechnology, Dankook University, Gyeonggi-Do 448-701, Korea.

出版信息

Soft Matter. 2014 Jan 28;10(4):553-9. doi: 10.1039/c3sm52669k.

DOI:10.1039/c3sm52669k
PMID:24652489
Abstract

We prepared three discotic liquid crystals (DLCs) based on a triphenylene (TP) disc functionalized with twelve alkyl peripheries. The synthesis of the discogens was performed by a click reaction using Cu(OAc)2 as the catalyst, with six triazolyl groups connecting the TP core with twelve alkyl chains. According to thermal data from differential scanning calorimetry (DSC), discogen , which has the shortest hexyl peripheries, exhibited two LC phases, and and , with decyl and tetradecyl peripheries, respectively, displayed three LC phases as a function of the temperature. Structural analyses using small- and wide-angle X-ray scattering (SAXS and WAXS) techniques revealed ordered and disordered hexagonal columnar LC phases in all the discogens. On the other hand, an unconventional micellar phase with P42/mnm symmetry consisting of thirty micelles was found only in and , when the temperature increased. The thermally induced transformation from the columnar to the micellar phase can be explained by increased chain entropy at higher temperatures. The complex micellar packing in the noncubic phase is attributed to the softness of the DLC micelles because the micellar corona consists of flexible alkyl chains. The discogen design concept in this study (i.e., the introduction of multibranched alkyl peripheries to the discotic mesogens via click chemistry) resulted in unconventional columnar-to-micellar transformation in conventional TP DLCs.

摘要

我们制备了三种基于用十二个烷基周边官能化的三亚苯基(TP)盘状的盘状液晶(DLC)。盘状化合物的合成通过使用Cu(OAc)2作为催化剂的点击反应进行,六个三唑基将TP核与十二个烷基链连接起来。根据差示扫描量热法(DSC)的热数据,具有最短己基周边的盘状化合物表现出两个液晶相,而分别具有癸基和十四烷基周边的化合物和则随温度显示出三个液晶相。使用小角和广角X射线散射(SAXS和WAXS)技术进行的结构分析揭示了所有盘状化合物中有序和无序的六方柱状液晶相。另一方面,当温度升高时,仅在和中发现了一种具有由三十个胶束组成的P42/mnm对称性的非常规胶束相。从柱状相到胶束相的热诱导转变可以通过较高温度下链熵的增加来解释。非立方相中复杂的胶束堆积归因于DLC胶束的柔软性,因为胶束冠由柔性烷基链组成。本研究中的盘状化合物设计概念(即通过点击化学将多支链烷基周边引入盘状介晶)导致了传统TP DLC中非常规的柱状到胶束的转变。

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