首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Photophysical and electroluminescence properties of bis(2 ',6 '-difluoro-2,3 '-bipyridinato-N,C4 ')iridium-(picolinate) complexes: effect of electron-withdrawing and electron-donating group substituents at the 4 ' position of the pyridyl moiety of the cyclometalated ligand
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Photophysical and electroluminescence properties of bis(2 ',6 '-difluoro-2,3 '-bipyridinato-N,C4 ')iridium-(picolinate) complexes: effect of electron-withdrawing and electron-donating group substituents at the 4 ' position of the pyridyl moiety of the cyclometalated ligand

机译:双(2',6'-二氟-2,3'-联吡啶-N,C4')铱-(吡啶甲酸)络合物的光物理和电致发光性质:吸电子和供电子基团取代基在4'位置的影响金属化配体的吡啶基部分的结构

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Herein, we have synthesized a series of 2',6'-difluoro-2,3'-bipyridine cyclometalating ligands by substituting electron-withdrawing (-CHO, -CF3, and -CN) and electron-donating (-OMe and -NMe2) groups at the 40 position of the pyridyl moiety and utilized them for the construction of five new iridium(III) complexes (Ir1-Ir5) in the presence of picolinate as an ancillary ligand. The photophysical properties of the developed iridium(III) compounds were investigated with a view to understand the substituent effects. The strong electron-withdrawing (-CN) group containing the iridium(III) compound (Ir3) exhibits highly efficient genuine green phosphorescence (lambda(max) = 508 nm) at room temperature in solution and in thin film, with an excellent quantum efficiency (Phi(PL)) of 0.90 and 0.98, respectively. On the other hand, the -CF3 group substituted iridium(III) compound (Ir2) displays a sky-blue emission (lambda(max) = 468 nm) with a promising quantum efficiency (Phi(PL) = 0.88 and 0.84 in solution and in thin film, respectively). The -CHO substituted iridium(III) complex (Ir1) showed greenish-yellow emission (lambda(max) = 542 nm). Most importantly, the strong electron-donating -NMe2 substituted iridium(III) complex (Ir5) gives a structureless and a broad emission profile in the wavelength region 450 to 700 nm (lambda(max) = 520 nm) with a poor quantum efficiency. An intense blue phosphorescence with impressive quantum efficiency, especially in thin-film noted in the case of the -OMe substituted iridium(III) complex (Ir4). Comprehensive density functional theory (DFT) and time-dependent DFT (TD-DFT) approaches have been performed on the ground and excited states of the synthesized iridium(III) complexes, in order to obtain information about the absorption and emission processes and to gain deeper insights into the photophysical properties. The combinations of a smaller Delta ES1-T1 and higher contribution of (MLCT)-M-3 in the emission process result in the higher quantum yields and lifetime values for complexes Ir1-Ir3. Multi-layered Phosphorescent Organic Light Emitting Diodes (PhOLEDs) were designed using the phosphorescent dopants Ir2, Ir3 and Ir4 and their elecroluminescence properties were evaluated. Compound Ir4 at a doping level of 5 wt% shows the best performance with an external quantum efficiency of 4.7%, in the nonoptimized device, and a power efficiency of 5.8 lm W-1, together with a true-blue chromacity CIEx,y = 0.15, 0.17 recorded at the maximum brightness of 33 180 cd m(-2).
机译:在这里,我们通过取代吸电子(-CHO,-CF3和-CN)和供电子(-OMe和-NMe2)合成了一系列2',6'-二氟-2,3'-联吡啶环金属配体)基团在吡啶基部分的40位上,并在吡啶甲酸作为辅助配体的情况下,将它们用于构建五个新的铱(III)配合物(Ir1-Ir5)。为了理解取代基的作用,研究了已开发的铱(III)化合物的光物理性质。含有铱(III)化合物(Ir3)的强吸电子(-CN)基团在室温下在溶液和薄膜中均表现出高效的真正绿色磷光(λ(max)= 508 nm),具有出色的量子效率(Phi(PL))分别为0.90和0.98。另一方面,-CF3基团取代的铱(III)化合物(Ir2)显示出天蓝色发射(λ(max)= 468 nm),并且在溶液中的量子效率为(Phi(PL)= 0.88和0.84),并且在薄膜中)。 -CHO取代的铱(III)配合物(Ir1)显示出黄绿色发射光(λ(max)= 542 nm)。最重要的是,强供电子的-NMe2取代的铱(III)络合物(Ir5)在450至700 nm的波长区域(λ(max)= 520 nm)内提供了无结构且较宽的发射轮廓,且量子效率很低。强烈的蓝色磷光,具有令人印象深刻的量子效率,尤其是在薄膜中-OMe取代的铱(III)络合物(Ir4)。已对合成铱(III)配合物的基态和激发态进行了综合密度泛函理论(DFT)和时变DFT(TD-DFT)方法,以获取有关吸收和发射过程的信息并获得深入了解光物理性质。发射过程中较小的Delta ES1-T1和较高的(MLCT)-M-3贡献相结合,导致配合物Ir1-Ir3具有更高的量子产率和寿命值。使用磷光掺杂剂Ir2,Ir3和Ir4设计了多层磷光有机发光二极管(PhOLED),并评估了它们的电致发光性能。在未优化的器件中,掺杂水平为5 wt%的化合物Ir4表现出最佳性能,其外部量子效率为4.7%,功率效率为5.8 lm W-1,以及真蓝色度CIEx,y = 0.15、0.17以33180 cd m(-2)的最大亮度记录。

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