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筛选半氟化亚芳基双酰亚胺文库以发现和预测热力学控制的螺旋结晶

Screening Libraries of Semifluorinated Arylene Bisimides to Discover and Predict Thermodynamically Controlled Helical Crystallization.

作者信息

Ho Ming-Shou, Partridge Benjamin E, Sun Hao-Jan, Sahoo Dipankar, Leowanawat Pawaret, Peterca Mihai, Graf Robert, Spiess Hans W, Zeng Xiangbing, Ungar Goran, Heiney Paul A, Hsu Chain-Shu, Percec Virgil

机构信息

Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6323, United States.

Department of Physics and Astronomy, University of Pennsylvania , Philadelphia, Pennsylvania 19104-6396, United States.

出版信息

ACS Comb Sci. 2016 Dec 12;18(12):723-739. doi: 10.1021/acscombsci.6b00143. Epub 2016 Nov 9.

Abstract

Synthesis, structural, and retrostructural analysis of a library containing 16 self-assembling perylene (PBI), 1,6,7,12-tetrachloroperylene (ClPBI), naphthalene (NBI), and pyromellitic (PMBI) bisimides functionalized with environmentally friendly AB chiral racemic semifluorinated minidendrons at their imide groups via m = 0, 1, 2, and 3 methylene units is reported. These semifluorinated compounds melt at lower temperatures than homologous hydrogenated compounds, permitting screening of all their thermotropic phases via structural analysis to discover thermodynamically controlled helical crystallization from propeller-like, cogwheel, and tilted molecules as well as lamellar-like structures. Thermodynamically controlled helical crystallization was discovered for propeller-like PBI, ClPBI and NBI with m = 0. Unexpectedly, assemblies of twisted ClPBIs exhibit higher order than those of planar PBIs. PBI with m = 1, 2, and 3 form a thermodynamically controlled columnar hexagonal 2D lattice of tilted helical columns with intracolumnar order. PBI and ClPBI with m = 1 crystallize via a recently discovered helical cogwheel mechanism, while NBI and PMBI with m = 1 form tilted helical columns. PBI, NBI and PMBI with m = 2 generate lamellar-like structures. 3D and 2D assemblies of PBI with m = 1, 2, and 3, NBI with m = 1 and PMBI with m = 2 exhibit 3.4 Å π-π stacking. The library approach applied here and in previous work enabled the discovery of six assemblies which self-organize via thermodynamic control into 3D and 2D periodic arrays, and provides molecular principles to predict the supramolecular structure of electronically active components.

摘要

报道了一个包含16种自组装苝(PBI)、1,6,7,12 - 四氯苝(ClPBI)、萘(NBI)和均苯四酸(PMBI)双酰亚胺的文库的合成、结构和逆向结构分析。这些半氟化化合物的熔点低于同源氢化化合物,通过结构分析可以筛选出它们所有的热致相,从而发现从螺旋桨状、齿轮状和倾斜分子以及层状结构中通过热力学控制的螺旋结晶。发现对于m = 0的螺旋桨状PBI、ClPBI和NBI存在热力学控制的螺旋结晶。出乎意料的是,扭曲的ClPBI的组装体比平面PBI的组装体具有更高的有序度。m = 1、2和3的PBI形成具有柱内有序的倾斜螺旋柱的热力学控制的柱状六方二维晶格。m = 1的PBI和ClPBI通过最近发现的螺旋齿轮机制结晶,而m = 1的NBI和PMBI形成倾斜螺旋柱。m = 2的PBI、NBI和PMBI生成层状结构。m = 1、2和3的PBI、m = 1的NBI和m = 2的PMBI的三维和二维组装体表现出3.4 Å的π - π堆积。这里以及之前工作中应用的文库方法使得发现了六种通过热力学控制自组装成三维和二维周期性阵列的组装体,并提供了预测电子活性成分超分子结构的分子原理。

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