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首页> 外文期刊>ACS Omega >Tuning Intramolecular Conformation and Packing Mode of Host Materials through Noncovalent Interactions for High-Efficiency Blue Electrophosphorescence
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Tuning Intramolecular Conformation and Packing Mode of Host Materials through Noncovalent Interactions for High-Efficiency Blue Electrophosphorescence

机译:通过非共价相互作用调节主体材料的分子内构象和堆积模式,以实现高效蓝色电致磷光

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Molecular conformation plays an important role in tuning the packing modes of organic optoelectronic materials to achieve enhanced and/or balanced charge transport. Here, we introduce the noncovalent intramolecular interactions to the host materials of phosphorescent organic light-emitting diodes (PhOLEDs). Different numbers and/or positions of intramolecular CH···N noncovalent interactions were constructed by using different N-heterocycles of pyridine, pyrimidine, and pyrazine as acceptor units and carbazole as the donor unit in a donor-acceptor-donor (D-A-D) motif. Thus, designed D-A-D molecules were synthesized facilely through a one-step Ullmann reaction in high yields, showing varied intramolecular interactions to regulate the molecular conformation significantly. Impressively, owing to the quasi-parallel molecular conformation, which is beneficial for forming facile transporting channels of both holes and electrons, the newly designed host material of 9,9′-(pyridine-2,5-diyl)bis(9H-carbazole) exhibits good device performance of blue PhOLEDs with current, power, and external quantum efficiencies up to 33.0 cd A–1, 32.1 lm W–1, and 16.3%, respectively. This work highlights the significant importance of the noncovalent interactions in designing advanced organic semiconductors for high-performance optoelectronic devices.
机译:分子构象在调节有机光电材料的堆积模式以实现增强和/或平衡的电荷传输方面起着重要作用。在这里,我们介绍非共价分子内相互作用到磷光有机发光二极管(PhOLEDs)的主体材料。通过在供体-受体-供体(DAD)基序中使用不同的吡啶,嘧啶和吡嗪的N-杂环作为受体单元和咔唑作为供体单元,构建分子内CH···N非共价相互作用的不同数量和/或位置。因此,设计的D-A-D分子通过一步式Ullmann反应以高收率轻松合成,显示出各种分子内相互作用,可显着调节分子构象。令人印象深刻的是,由于拟平行分子构象有利于形成空穴和电子的便捷传输通道,新设计的9,9'-(吡啶-2,5-二基)双(9H-咔唑)主体材料)在电流,功率和外部量子效率分别高达33.0 cd A-1、32.1 lm W-1和16.3%的情况下,表现出蓝色PhOLED的良好器件性能。这项工作突出了非共价相互作用在设计用于高性能光电器件的先进有机半导体中的重要意义。

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