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设计并合成铱双卡宾配合物以实现高效蓝色电致磷光。

Design and synthesis of iridium bis(carbene) complexes for efficient blue electrophosphorescence.

机构信息

Department of Chemistry, National Tsing Hua University, Hsinchu 30013, Taiwan.

出版信息

Chemistry. 2011 Aug 8;17(33):9180-7. doi: 10.1002/chem.201100317. Epub 2011 Jul 5.

Abstract

Five iridium bis(carbene) complexes, [Ir(pmi)(2)(pypz)] (1), [Ir(mpmi)(2)(pypz)] (2), [Ir(fpmi)(2)(pypz)] (3), [Ir(fpmi)(2)(pyim)] (4), and [Ir(fpmi)(2)(tfpypz)] (5) (pmi=1-phenyl-3-methylimdazolin-2-ylidene-C,C(2'); fpmi=1-(4-fluorophenyl)-3-methylimdazolin-2-ylidene-C,C(2'); mpmi=1-(4-methyl-phenyl)-3-methylimdazolin-2-ylidene-C,C(2'); pypz=2-(1H-pyrazol-5-yl)pyridinato; pyim=2-(1H-imidazol-2-yl)pyridinato; and tfpypz=2-(3-(trifluoromethyl)-1H-pyrazol-5-yl)pyridinato), were synthesized and their structures were characterized by NMR spectroscopy, mass spectroscopy and X-ray diffraction. These complexes showed phosphorescent emission with the emission maxima between 453 and 490 nm. Various spectrophotometric measurements, cyclic voltammetric studies, and density functional theory (DFT) calculations show that, unlike most of the phosphorescent cyclometalated iridium complexes, the lowest unoccupied molecular orbital (LUMO) energy and the emissive state of these iridium complexes are mainly controlled by the N,N'-heteroaromatic (N^N) ligand. Despite the fact that the LUMO levels of these complexes are mainly on the N^N ligands, the efficiencies of the electroluminescent (EL) devices are very high. For example, the EL devices using [Ir(mpmi)(2)(pypz)], [Ir(fpmi)(2)(pypz)], and [Ir(fpmi)(2)(tfpypz)] as the dopant emitters exhibited light- to deep-blue electrophosphorescence with external quantum efficiencies of 15.2, 14.1, and 7.6% and Commission Internationale d'Énclairage (x,y) coordinates (CIE(x,y)) of (0.14, 0.27), (0.14, 0.18) and (0.14, 0.10), respectively.

摘要

五种铱双(卡宾)配合物,[Ir(pmi)(2)(pypz)](1)、[Ir(mpmi)(2)(pypz)](2)、[Ir(fpmi)(2)(pypz)](3)、[Ir(fpmi)(2)(pyim)](4)和[Ir(fpmi)(2)(tfpypz)](5)(pmi=1-苯基-3-甲基咪唑啉-2-亚基-C,C(2');fpmi=1-(4-氟苯基)-3-甲基咪唑啉-2-亚基-C,C(2');mpmi=1-(4-甲基苯基)-3-甲基咪唑啉-2-亚基-C,C(2');pypz=2-(1H-吡唑-5-基)吡啶;pyim=2-(1H-咪唑-2-基)吡啶;和 tfpypz=2-(3-(三氟甲基)-1H-吡唑-5-基)吡啶),被合成并通过 NMR 光谱、质谱和 X 射线衍射进行了结构表征。这些配合物显示出磷光发射,发射最大值在 453nm 到 490nm 之间。各种分光光度测量、循环伏安研究和密度泛函理论(DFT)计算表明,与大多数磷光环金属铱配合物不同,这些铱配合物的最低未占据分子轨道(LUMO)能量和发射态主要由 N,N'-杂环(N^N)配体控制。尽管这些配合物的 LUMO 水平主要在 N^N 配体上,但电致发光(EL)器件的效率非常高。例如,使用[Ir(mpmi)(2)(pypz)]、[Ir(fpmi)(2)(pypz)]和[Ir(fpmi)(2)(tfpypz)]作为掺杂剂的 EL 器件发出光致深蓝色电磷光,外量子效率分别为 15.2%、14.1%和 7.6%,国际照明委员会(x,y)坐标(CIE(x,y))分别为(0.14,0.27)、(0.14,0.18)和(0.14,0.10)。

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