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星形π共轭体系的进展:性质与应用

Advances in star-shaped π-conjugated systems: properties and applications.

作者信息

Jarosz Tomasz, Lapkowski Mieczyslaw, Ledwon Przemyslaw

机构信息

Department of Physical Chemistry and Technology of Polymers, Silesian University of Technology, 44-100, Gliwice, M. Strzody 9, Poland.

出版信息

Macromol Rapid Commun. 2014 Jun;35(11):1006-32. doi: 10.1002/marc.201400061. Epub 2014 Apr 2.

Abstract

Until recently π-conjugated organic materials are based mainly on linear systems. Recent years, however, have brought about increasing interest in molecules boasting a dendritic, branched, or star-shaped architecture. This tendency is a direct result of the ongoing search for materials with progressively better properties. Such compounds, featuring novel, 3D architectures, exhibit a multitude of interesting qualities, making them stand out from well-known materials. The direction of star-shaped compound application is determined by whether they are able to form aggregates, π-stacks. This feature is a source of some astounding properties, coveted in numerous applications. Among this class of compounds high charge mobility, high fluorescence efficiency, and good charge separation are all found. Depending on the structure of the core, the molecule may adopt various types of symmetry. Similarly, the conjugation of orbitals may extend over the whole structure or be interrupted at chosen segments. The number of papers pertaining to star-shaped oligomers and polymers is ascending with each year, evidencing a growing interest in them. Consequently, this Review focuses particularly on the most recent reports concerning modification of the structure and properties of the aforementioned type of compounds, as well as on the development of devices based on them.

摘要

直到最近,π共轭有机材料主要基于线性体系。然而,近年来,人们对具有树枝状、分支状或星形结构的分子越来越感兴趣。这种趋势是不断寻找性能越来越好的材料的直接结果。这类具有新颖三维结构的化合物表现出许多有趣的特性,使其有别于知名材料。星形化合物的应用方向取决于它们是否能够形成聚集体、π堆积。这一特性是众多应用中令人垂涎的一些惊人特性的来源。在这类化合物中,发现了高电荷迁移率、高荧光效率和良好的电荷分离。根据核心结构的不同,分子可能具有各种类型的对称性。同样,轨道的共轭可以延伸到整个结构,也可以在选定的片段处中断。与星形低聚物和聚合物相关的论文数量逐年上升,表明人们对它们的兴趣与日俱增。因此,本综述特别关注有关上述类型化合物结构和性能改性的最新报道,以及基于它们的器件的发展。

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