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理解梯形结构在蜂窝状自组装中的作用——柱状液晶准晶与其液晶近似物之间的组装路径

Understanding the Role of Trapezoids in Honeycomb Self-Assembly-Pathways between a Columnar Liquid Quasicrystal and its Liquid-Crystalline Approximants.

作者信息

Cao Yu, Scholte Alexander, Prehm Marko, Anders Christian, Chen Changlong, Song Jiangxuan, Zhang Lei, He Gang, Tschierske Carsten, Liu Feng

机构信息

Shaanxi International Research Center for Soft Matter, State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.

MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, Xi'an Jiaotong University, Xi'an, 710049, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Feb 5;63(6):e202314454. doi: 10.1002/anie.202314454. Epub 2023 Dec 20.

Abstract

Quasiperiodic patterns and crystals-having long range order without translational symmetry-have fascinated researchers since their discovery. In this study, we report on new p-terphenyl-based T-shaped facial polyphiles with two alkyl end chains and a glycerol-based hydrogen-bonded side group that self-assemble into an aperiodic columnar liquid quasicrystal with 12-fold symmetry and its periodic liquid-crystalline approximants with complex superstructures. All represent honeycombs formed by the self-assembly of the p-terphenyls, dividing space into prismatic cells with polygonal cross-sections. In the perspective of tiling patterns, the presence of unique trapezoidal tiles, consisting of three rigid sides formed by the p-terphenyls and one shorter, incommensurate, and adjustable side by the alkyl end chains, plays a crucial role for these phases. A delicate temperature-dependent balance between conformational, entropic and space-filling effects determines the role of the alkyl chains, either as network nodes or trapezoid walls, thus resulting in the order-disorder transitions associated with emergence of quasiperiodicity. In-depth analysis suggests a change from a quasiperiodic tiling involving trapezoids to a modified one with a contribution of trapezoid pair fusion. This work paves the way for understanding quasiperiodicity emergence and develops fundamental concepts for its generation by chemical design of non-spherical molecules, aggregates, and frameworks based on dynamic reticular chemistry.

摘要

准周期图案和晶体(具有长程有序但无平移对称性)自发现以来一直吸引着研究人员。在本研究中,我们报道了一种新型的基于对三联苯的T形面多亲分子,其具有两条烷基端链和一个基于甘油的氢键侧基,该分子自组装成具有12重对称性的非周期柱状液晶准晶体及其具有复杂超结构的周期性液晶近似物。所有这些都代表了由对三联苯自组装形成的蜂窝结构,将空间划分为具有多边形横截面的棱柱形单元。从平铺图案的角度来看,独特梯形瓷砖的存在起着关键作用,这些梯形瓷砖由对三联苯形成的三个刚性边和烷基端链形成的一个较短、不相称且可调节的边组成。构象、熵和空间填充效应之间微妙的温度依赖性平衡决定了烷基链作为网络节点或梯形壁的作用,从而导致与准周期性出现相关的有序-无序转变。深入分析表明,从涉及梯形的准周期平铺转变为有梯形对融合贡献的修改后的平铺。这项工作为理解准周期性的出现铺平了道路,并通过基于动态网状化学的非球形分子、聚集体和框架的化学设计,为其产生发展了基本概念。

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