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Computer simulations of a liquid crystalline dendrimer in liquid crystalline solvents.

机译:液晶溶剂中液晶树枝状聚合物的计算机模拟。

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摘要

Molecular dynamics simulations have been carried out to study the structure of a model liquid crystalline dendrimer (LCDr) in solution. A simplified model is used for a third generation carbosilane LCDr in which united atom Lennard-Jones sites are used to represent all heavy atoms in the dendrimer with the exception of the terminal mesogenic groups, which are represented by Gay-Berne potentials. The model dendrimer is immersed in a mesogenic solvent composed of Gay-Berne particles, which can form nematic and smectic-A phases in addition to the isotropic liquid. Markedly different behavior results from simulations in the different phases, with the dendrimer changing shape from spherical to rodlike in moving from isotropic to nematic solvents. In the smectic-A phase the terminal mesogenic units are able to occupy five separate smectic layers. The change in structure of the dendrimer is mediated by conformational changes in the flexible chains, which link the terminal mesogenic moieties to the dendrimer core.
机译:已经进行了分子动力学模拟以研究溶液中的模型液晶树状聚合物(LCDr)的结构。一个简化的模型用于第三代碳硅烷LCDr,其中联原子Lennard-Jones位点用于表示树枝状聚合物中的所有重原子,但端基介晶基除外,后者由盖伊-伯恩势表示。将模型树状聚合物浸入由Gay-Berne颗粒组成的介晶溶剂中,该溶剂除了各向同性液体外还可以形成向列相和近晶A相。在不同阶段的模拟结果明显不同,在从各向同性溶剂向向列溶剂移动时,树枝状聚合物的形状从球形变为棒状。在近晶A阶段,末端介晶单元能够占据五个独立的近晶层。树枝状聚合物结构的变化是由柔性链的构象变化介导的,其将末端介晶部分连接至树枝状聚合物核心。

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