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Efficient near infrared light emitting electrochemical cell (NIR-LEEC) based on new binuclear ruthenium phenanthroimidazole exhibiting desired charge carrier dynamics

机译:基于新型双核钌菲并咪唑的高效近红外发光电化学电池(NIR-LEEC)具有理想的载流子动力学

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摘要

Near-infrared light-emitting electrochemical cell (NIR-LEEC) has emerged as a new and promising lighting sourcewhich could serve as low-cost alternatives in NIR light-emitting sources which are typically expensive. LECs were also shown advantages such as light weight, simplicity and low operation voltages. However, only a few examples of NIR-LEEC are reported in which external quantum efficiency(EQE) of devices limited to 0.1%. Here, we report, efficient NIR-LEEC based of two novel binuclear ruthenium phenanthroimidzole complex which differ by employing the type of ancillary ligand including 2, 2′bipyridine (bpy) (B1) and 4, 4′ dimethyl bpy (B2) that realize maximum EQE of 0.14 and 0.68% and extremely long excited state lifetimes of 220 and 374 ns for thin film were estimated, respectively, indicating that influences of substitution on ancillary ligand. Moreover, this substitution dramatically influences other electroluminescence metrics including decreasing turn on voltage from 4.5 to 3.1 V, increasing maximum luminance (Lmax) from 193to 742 cd.m−2 and increasing lifetime from 539 to 1104 second, which are the best value among the binuclear ruthenium polypyridyl complexes to date.
机译:近红外发光电化学电池(NIR-LEEC)已经成为一种新兴的有前途的光源,可以作为通常很昂贵的NIR光源的低成本替代品。还显示出LEC的优点,例如重量轻,简单和操作电压低。但是,仅报道了NIR-LEEC的少数示例,其中器件的外部量子效率(EQE)限制为0.1%。在这里,我们报告了一种高效的NIR-LEEC,它基于两种新颖的双核钌菲咯并咪唑配合物,它们通过使用辅助配体的类型而有所不同,所述辅助配体包括2、2'联吡啶(bpy)(B1)和4,4'二甲基bpy(B2),薄膜的最大EQE分别为0.14和0.68%,极高的激发态寿命估计为220和374 ns,这表明取代对辅助配体的影响。此外,这种替代会极大地影响其他电致发光指标,包括将导通电压从4.5降低至3.1 V,将最大亮度(Lmax)从193 cd.m -2 增加以及将寿命从539延长至1104秒,这是迄今为止双核钌多吡啶基配合物中最好的值。

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