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Iridium complexes containing 2-aryl-benzothiazole ligands: color tuning and application in high-performance organic light-emitting diodes

机译:含2-芳基-苯并噻唑配体的铱配合物:颜色调整和在高性能有机发光二极管中的应用

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Three 2-aryl-benzothiazole chromophores were designed and synthesized for use as major cyclometalating ligands of iridium complexes, in which the aryl groups were N-phenyl-3-carbazolyl, 2-(9,9-dioctyl)fluorenyl and N-phenyl-2-carbazolyl. The homoleptic tris-cydometalated and heteroleptic bis-cydometalated iridium complexes, 1-5, were synthesized using these ligands. By adjusting the chemical structures and then the electronic state of these complexes, we were able to continuously tune the phosphorescence from yellow to saturated red with peak wavelengths in the order of 1 < 2 < 3 < 4 < 5. The quantum chemical calculations and the electrochemical data clearly demonstrate the origin of the phosphorescence color tuning. The organic light-emitting diodes (OLEDs) containing these iridium complexes as doped emitters exhibited yellow to red electrophosphorescence with excellent performance. Particularly, the complex 1 based device produced high efficiencies of 75.9 cd A~(-1), 48.2 Im W~(-1) and 23.0% with CIE (0.46, 0.53), which represent the highest efficiencies for yellow OLEDs up to now. Furthermore, 1 was used to fabricate two-element white OLEDs in combination with a blue phosphor and high efficiencies of 57.9 cd A~(-1) and 21.9% were achieved, which are among the best efficiencies for two-emitting-component white OLEDs reported so far.
机译:设计并合成了三个2-芳基-苯并噻唑发色团,作为铱配合物的主要环金属配体,其中的芳基为N-苯基-3-咔唑基,2-(9,9-二辛基)芴基和N-苯基- 2-咔唑基。使用这些配体合成了均均三环金属化和异均双环金属化的铱配合物1-5。通过调节这些配合物的化学结构和电子态,我们能够连续地将磷光从黄色调至饱和红色,峰值波长的顺序为1 <2 <3 <4 <5。电化学数据清楚地证明了磷光颜色调节的起源。包含这些铱配合物作为掺杂发射体的有机发光二极管(OLED)表现出黄色至红色的电磷光,并具有出色的性能。特别是,基于复合物1的器件产生的高效率分别为75.9 cd A〜(-1),48.2 Im W〜(-1)和23.0%,CIE(0.46,0.53),代表了迄今为止黄色OLED的最高效率。 。此外,使用1与蓝色磷光体组合制造两元素白色OLED时,实现了57.9 cd A〜(-1)和21.9%的高效率,这是两发射成分白色OLED的最佳效率之一到目前为止报道。

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