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π共轭二噻吩并[3,2-b:2',3'-d]磷杂环戊二烯带隙对不同发射颜色的选择性调控。

Selective tuning of the band gap of pi-conjugated dithieno[3,2-b:2',3'-d]phospholes toward different emission colors.

作者信息

Dienes Yvonne, Durben Stefan, Kárpáti Tamás, Neumann Toni, Englert Ulli, Nyulászi László, Baumgartner Thomas

机构信息

Institute of Inorganic Chemistry, RWTH-Aachen University, Landoltweg 1, 52074 Aachen, Germany.

出版信息

Chemistry. 2007;13(26):7487-500. doi: 10.1002/chem.200700399.

Abstract

The systematic extension of the pi-conjugated system of strongly blue-luminescent dithieno[3,2-b:2',3'-d]phospholes has been investigated with the goal of obtaining different emission colors. Functionalization of the 2- and 6-position of the dithienophosphole scaffold with halogen substituents provided functional building blocks for subsequent cross-coupling experiments with various homo- and heteroaryls to selectively decrease the band gap of the materials. By this strategy materials with different emission colors ranging from green via yellow to orange could be obtained. This feature supports their suitability for organic light-emitting diodes with respect to an application in full-color flat-panel displays. The experimental results were nicely supported by theoretical DFT calculations providing a deeper understanding of the electronic structure in the extended materials, and also allowing for the design of future materials based on a dithienophosphole core. Furthermore, the phosphorus center in the extended molecular materials can efficiently be fine-tuned in subsequent simple chemical functionalizations. This allows for a tailoring of the optoelectronic properties of the extended dithienophospholes to suit the requirements of potential applications.

摘要

为了获得不同的发射颜色,人们对强蓝色发光二噻吩并[3,2 - b:2',3'- d]磷光体的π共轭体系进行了系统扩展研究。用卤素取代基对二噻吩磷光体骨架的2位和6位进行官能化,为后续与各种同芳基和杂芳基进行交叉偶联实验提供了功能构建块,以选择性地降低材料的带隙。通过这种策略,可以获得从绿色到黄色再到橙色的不同发射颜色的材料。这一特性支持了它们在全彩色平板显示器应用中对有机发光二极管的适用性。理论DFT计算很好地支持了实验结果,这有助于更深入地理解扩展材料中的电子结构,也有助于基于二噻吩磷光体核心设计未来的材料。此外,在后续简单的化学官能化过程中,可以有效地对扩展分子材料中的磷中心进行微调。这使得能够定制扩展二噻吩磷光体的光电性能,以满足潜在应用的需求。

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