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具有增强的薄膜非晶态的铱(III)配合物作为客体,用于高效的橙黄色溶液处理单层 PhOLED,具有低效率滚降。

Iridium(III) complexes with enhanced film amorphism as guests for efficient orange solution-processed single-layer PhOLEDs with low efficiency roll-off.

机构信息

College of Chemistry, Sichuan University, Chengdu, 610064, PR China.

出版信息

Dalton Trans. 2013 Aug 7;42(29):10559-71. doi: 10.1039/c3dt50834j. Epub 2013 Jun 12.

DOI:10.1039/c3dt50834j
PMID:23759930
Abstract

By introducing a phenyl substituent into the meta-site of the phenyl segment of the 2-phenylbenzothiazole ligand, two novel orange iridium(III) complexes, namely, (3Phbt)2Ir(acac) and (3OMePhbt)2Ir(acac), have been synthesized. Compared with their parent compound (bt)2Ir(acac), both of them possess much enhanced thermostability and film amorphism, making them suitable candidates as guests for high performance solution-processed phosphorescent organic light-emitting diodes (PhOLEDs). However, (4Phbt)2Ir(acac) bearing para-phenyl possesses worse processability relative to (bt)2Ir(acac) due to spontaneous crystallization stemming from the intense intermolecular interactions. Single-layer solution-processed PhOLEDs with (3Phbt)2Ir(acac) and (3OMePhbt)2Ir(acac) as guests show peak current efficiency of 17.2 cd A(-1) and 15.2 cd A(-1), and maximum brightness of 28,270 cd m(-2) and 27,900 cd m(-2), respectively. Both are greatly improved compared to the devices employing (bt)2Ir(acac) (10.2 cd A(-1) and 14,350 cd m(-2)) and (4Phbt)2Ir(acac) (5.0 cd A(-1) and 13,790 cd m(-2)) as phosphors. Moreover, quite low efficiency roll-off is acquired in these devices at high luminance. The much improved electroluminescence performances of these objective complexes could be mainly attributed to the presence of a rigid phenyl on the appropriate substitution site of the cyclometallate ligand, which leads to improved thermostability with compatible alleviated intermolecular interactions, and consequently enhanced film amorphism.

摘要

通过在 2-苯基苯并噻唑配体的苯基部分的间位引入一个苯基取代基,合成了两个新型的橙色铱(III)配合物,即(3Phbt)2Ir(acac)和(3OMePhbt)2Ir(acac)。与它们的母体化合物(bt)2Ir(acac)相比,它们都具有更高的热稳定性和薄膜非晶性,这使得它们成为高性能溶液处理磷光有机发光二极管(PhOLED)的合适客体。然而,带有对位苯基的(4Phbt)2Ir(acac)由于强烈的分子间相互作用导致自发结晶,相对(bt)2Ir(acac)而言,其加工性能较差。单层溶液处理的 PhOLED 以(3Phbt)2Ir(acac)和(3OMePhbt)2Ir(acac)为客体,其峰值电流效率分别为 17.2 cd A(-1)和 15.2 cd A(-1),最大亮度分别为 28,270 cd m(-2)和 27,900 cd m(-2)。与采用(bt)2Ir(acac)(10.2 cd A(-1)和 14,350 cd m(-2))和(4Phbt)2Ir(acac)(5.0 cd A(-1)和 13,790 cd m(-2))作为磷光体的器件相比,这两个器件都有很大的提高。此外,在这些器件中,在高亮度下也获得了相当低的效率滚降。这些目标配合物的电致发光性能得到了显著改善,这主要归因于在环金属化配体的适当取代位置上存在刚性的苯基,这导致了热稳定性的提高,同时兼容地减轻了分子间相互作用,从而提高了薄膜非晶性。

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