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Impact of the use of sterically congested Ir(III) complexes on the performance of light-emitting electrochemical cells

机译:使用空间拥挤的IR(III)复合物对发光电化学细胞性能的影响

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The synthesis, structural and optoelectronic characterization of a family of sterically congested cyclometalated cationic Ir(III) complexes of the form [Ir(C^ N) 2(dtBubpy)] PF6 (with dtBubpy = 4,40-di-tertbutyl- 2,20-bipyridine and C^ N = a cyclometalating ligand decorated at the 4-position of the pyridine ring and/or the 3-position of the phenyl ring with a range of sterically bulky substituents) are reported. This family of complexes is compared to the unsubstituted analogue complex R1 bearing 2-phenylpyridinato as cyclometalating ligand. The impact of sterically bulky substituents on the C^ N ligands on both the solid state photophysics and light-emitting electrochemical cell (LEEC) device performance is investigated. X-ray diffraction analysis of complexes 1a, R2, 2a, and 1b show an increasing internuclear distance in the solid state, within these four complexes. Emission studies in solution and neat film show that the chosen substituents essentially do not impact the emission energy. The photoluminescence quantum yields (FPL) are in the same range (FPL B 25-31%), except for 1b, which shows a lower FPL of 12%. All complexes exhibit similar monoexponential emission lifetimes in the submicrosecond regime. LEECs based on R1, 1a, 1b and R2 were fabricated, showing yellow luminescence and moderate efficiencies and lifetimes. The arguably best performing LEEC device, showing the highest luminance (737 cd m 2), current efficiency (7.4 cd A 1) and EQE (2.6%), employed emitter 1a.
机译:形式的空心全相同的环状阳离子阳离子IR(III)复合物的合成,结构和光电子表征[IR(C 1 ^ N)2(DTBUBPY)] PF6(用DTBUBPY = 4,40-二叔丁基据报道,2,20-硼啶和C.N = N = N = N = N =在吡啶环的4-位置处装饰的环荷隆配体和/或具有一系列空间庞大的取代基的苯环的3-位)。将该系列复合物与未取代的类似物复合物R1轴承2-苯基吡啶氨酸作为环荷酸琥珀酸配体进行比较。在C ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ ^ 研究了固态光学用物和发光电化学电池(Leec)器件性能的N配体。复合物1a,r2,2a和1b的X射线衍射分析显示在这四个配合物中固态的增加的间隙距离。溶液和整齐膜的排放研究表明,所选择的取代基基本上不会影响发光能量。除了1B之外,光致发光量子产率(FPL)在相同的范围内(FPL B 25-31%),其显示为12%的低FPL。所有复合物在亚微米的制度中表现出类似的单缩凸起寿命。制造基于R1,1A,1B和R2的LEEC,显示黄色发光和中度效率和寿命。可以使用最佳性能的Leec设备,显示最高亮度(737cd m 2),电流效率(7.4cd a 1)和Eqe(2.6%)采用的发射器1a。

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