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用于制备发光材料的芘的功能化——合成方法的典型实例

Functionalization of Pyrene To Prepare Luminescent Materials-Typical Examples of Synthetic Methodology.

作者信息

Feng Xing, Hu Jian-Yong, Redshaw Carl, Yamato Takehiko

机构信息

School of Printing and Packing Engineering, Beijing Institute of Graphic Communication, 1 Xinghua Avenue (Band Two), Daxing, Beijing, 102600, P.R. China.

Department of Applied Chemistry, Faculty of Science and Engineering, Saga University, Honjo-machi 1, Saga, 840-8502, Japan.

出版信息

Chemistry. 2016 Aug 16;22(34):11898-916. doi: 10.1002/chem.201600465. Epub 2016 Jul 8.

Abstract

Pyrene-based π-conjugated materials are considered to be an ideal organic electro-luminescence material for application in semiconductor devices, such as organic light-emitting diodes (OLEDs), organic field-effect transistors (OFETs) and organic photovoltaics (OPVs), and so forth. However, the great drawback of employing pyrene as an organic luminescence material is the formation of excimer emission, which quenches the efficiency at high concentration or in the solid-state. Thus, in order to obtain highly efficient optical devices, scientists have devoted much effort to tuning the structure of pyrene derivatives in order to realize exploitable properties by employing two strategies, 1) introducing a variety of moieties at the pyrene core, and 2) exploring effective and convenient synthetic strategies to functionalize the pyrene core. Over the past decades, our group has mainly focused on synthetic methodologies for functionalization of the pyrene core; we have found that formylation/acetylation or bromination of pyrene can selectly lead to functionalization at K-region by Lewis acid catalysis. Herein, this Minireview highlights the direct synthetic approaches (such as formylation, bromination, oxidation, and de-tert-butylation reactions, etc.) to functionalize the pyrene in order to advance research on luminescent materials for organic electronic applications. Further, this article demonstrates that the future direction of pyrene chemistry is asymmetric functionalization of pyrene for organic semiconductor applications and highlights some of the classical asymmetric pyrenes, as well as the latest breakthroughs. In addition, the photophysical properties of pyrene-based molecules are briefly reviewed. To give a current overview of the development of pyrene chemistry, the review selectively covers some of the latest reports and concepts from the period covering late 2011 to the present day.

摘要

芘基π共轭材料被认为是一种理想的有机电致发光材料,可应用于半导体器件,如有机发光二极管(OLED)、有机场效应晶体管(OFET)和有机光伏电池(OPV)等。然而,将芘用作有机发光材料的一个重大缺点是会形成准分子发射,这会在高浓度或固态状态下降低效率。因此,为了获得高效的光学器件,科学家们付出了很多努力来调整芘衍生物的结构,以便通过两种策略实现可利用的性能:1)在芘核上引入各种基团;2)探索有效且便捷的合成策略来使芘核功能化。在过去几十年中,我们团队主要专注于芘核功能化的合成方法;我们发现芘的甲酰化/乙酰化或溴化反应可通过路易斯酸催化选择性地导致在K区域功能化。在此,这篇小型综述重点介绍了使芘功能化的直接合成方法(如甲酰化、溴化、氧化和脱叔丁基化反应等),以推动有机电子应用发光材料的研究。此外,本文表明芘化学的未来方向是用于有机半导体应用的芘的不对称功能化,并重点介绍了一些经典的不对称芘以及最新突破。另外,还简要回顾了芘基分子的光物理性质。为了对芘化学的发展现状有一个概述,该综述有选择性地涵盖了2011年末至今这段时间的一些最新报道和概念。

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