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星型π共轭寡聚物及其在有机电子学和光子学中的应用。

Star-shaped pi-conjugated oligomers and their applications in organic electronics and photonics.

机构信息

WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow G1 1XL, UK.

出版信息

Chem Soc Rev. 2010 Jul;39(7):2695-728. doi: 10.1039/b918154g. Epub 2010 Jun 2.

Abstract

Strategies for the design and construction of non-linear, 2D and 3D conjugated macromolecules are presented in this critical review. The materials, termed here as star-shaped structures, feature a core unit which may or may not provide conjugated links between arms that radiate like spokes from a central axle. The arms of the macromolecules consist of linear oligomers or irregular conjugated chains lacking a formal repeat unit. The cores range from simple atoms to single or fused aromatic units and can provide a high level of symmetry to the overall structure. The physical properties of the star-shaped materials can be markedly different to their simple, linear conjugated analogues. These differences are highlighted and we report on anomalies in absorption/emission characteristics, electronic energy levels, thermal properties and morphology of thin films. We provide numerous examples for the application of star-shaped conjugated macromolecules in organic semiconductor devices; a comparison of their device performance with those comprising analogous linear systems provides clear evidence that the star-shaped compounds are an important class of material in organic electronics. Moreover, these structures are monodisperse, well-defined, discrete molecules with 100% synthetic reproducibility, and possess high purity and excellent solubility in common organic solvents. They feature many of the attributes of plastic materials (good film-forming properties, thermal stability, flexibility) and are therefore extremely attractive alternatives to conjugated polymers (210 references).

摘要

本文综述了设计和构建非线性、2D 和 3D 共轭大分子的策略。这些材料被称为星型结构,其特征是核心单元,该单元可能在支链之间提供共轭连接,支链像从中心轴辐射的辐条一样。大分子的支链由线性寡聚物或不规则共轭链组成,缺乏正式的重复单元。核心可以是简单的原子、单个或融合的芳香单元,可以为整体结构提供高度的对称性。星型材料的物理性质可能与其简单的线性共轭类似物明显不同。我们突出了这些差异,并报告了吸收/发射特性、电子能级、热性能和薄膜形态的异常情况。我们提供了许多星型共轭大分子在有机半导体器件中应用的例子;将它们的器件性能与类似的线性系统进行比较,清楚地证明了星型化合物是有机电子学中一类重要的材料。此外,这些结构是单分散的、定义明确的、离散的分子,具有 100%的合成重现性,并且具有高纯度和优异的在常见有机溶剂中的溶解性。它们具有许多塑料材料的特性(良好的成膜性能、热稳定性、柔韧性),因此是共轭聚合物的极具吸引力的替代品(210 篇参考文献)。

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