Suppr超能文献

基于芘的不对称液晶树枝状大分子的动力学控制的多晶超结构:分级超结构与光物理性质的关系。

Kinetically Controlled Polymorphic Superstructures of Pyrene-Based Asymmetric Liquid Crystal Dendron: Relationship Between Hierarchical Superstructures and Photophysical Properties.

机构信息

BK21 Plus Haptic Polymer Composite Research Team, Department of Polymer-Nano Science and Technology, Chonbuk National University, Jeonju, Jeonbuk, 54896, Korea.

Institute of Advanced Composite Materials, Korea Institute of Science and Technology, Jeonbuk, 565-905, Korea.

出版信息

Chemistry. 2018 Jun 26;24(36):9015-9021. doi: 10.1002/chem.201801284. Epub 2018 Jun 8.

Abstract

To understand the relationship between kinetically controlled hierarchical superstructures and photophysical properties, pyrene-based asymmetric liquid crystal (LC) dendrons (abbreviated as PD) were newly synthesized by covalently attaching a pyrene moiety (P) at a biphenyl-based LC dendritic group (D). The phase transition behavior of PD has been systematically studied with a combined technique of thermal analysis, microscopy, spectroscopy, and scattering analysis. PD formed two different crystalline structures depending on the cooling rate: a stable crystalline phase (K , slow cooling) and a metastable crystalline phase (K , quenching). The kinetically controlled molecular packing structures of PD depend on the competition and cooperation of intermolecular physical interactions with nanophase separation. Upon slow cooling, the PD dimer formed by intermoelcular H-bonding constructed a layered hierarchical structure with the help of nanophase separation. Owing to the strong π-π stacking (J-aggregation) with weak H-bondings, the PD dimer in the layer was slightly tilted to give a monoclinic layered structure with a periodic layer d-spacing of 6.6 nm. In contrast, the metastable K phase formed by the quenching process showed a significant tilt of the PD dimer in the layer (d-spacing=4.4 nm) due to the weak π-π stacking (H-aggregation) and the strong H-bondings.

摘要

为了理解动力学控制的分级超结构与光物理性质之间的关系,我们通过将芘部分(P)共价连接到基于联苯的液晶树枝状基团(D)上来新合成了基于芘的不对称液晶(LC)树枝状分子(简称 PD)。我们用热分析、显微镜、光谱学和散射分析相结合的技术系统地研究了 PD 的相变行为。PD 根据冷却速率形成了两种不同的晶体结构:稳定的晶相(Kslow cooling)和亚稳晶相(Kquenching)。PD 的动力学控制的分子堆积结构取决于分子间物理相互作用与纳米相分离的竞争与合作。在缓慢冷却的情况下,分子间氢键形成的 PD 二聚体在纳米相分离的帮助下构建了层状分级结构。由于具有弱氢键的强π-π堆积(J-聚集),层中的 PD 二聚体略微倾斜,形成具有周期性层间距为 6.6nm 的单斜层状结构。相比之下,通过淬火过程形成的亚稳 K 相由于弱的π-π堆积(H-聚集)和强的氢键,层中的 PD 二聚体发生明显倾斜(层间距=4.4nm)。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验