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B- and N-embedded color-tunable phosphorescent iridium complexes and B–N Lewis adducts with intriguing structural and optical changes

机译:B-和N嵌入的颜色可调磷光铱络合物和B-N Lewis加合物加合的结构和光学变化

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A novel family of B- and N-embedded phosphorescent iridium complexes has been prepared. Single crystal structures indicate that the B-embedded polycyclic unit exhibits better planarity than the N-embedded polycyclic unit, which leads to different π–π-stacking and electrical characteristics. More importantly, by controlling the number of boron or nitrogen atoms embedded, solution-processed OLED devices incorporating these emitters as emitting layers can achieve a phosphorescence color variation from green to deep red (638 nm) and show low-efficiency roll-off and turn-on voltage. In particular, the B-embedded complex Ir-BB shows good color purity with a narrow full width at half maximum (1211 cm ~(?1) ) and CIE coordinates (0.67, 0.31) in the deep red light region. Notably, B-embedded iridium complexes can also react with two different Lewis bases (pyridine and DMAP) to form intriguing B–N Lewis adducts through different coordination modes. During this process, significantly different structural and optical changes are triggered by the structure and electronic properties of Lewis bases, as confirmed by X-ray crystallographic, ~(1) H NMR and spectral analysis.
机译:制备了一种新型的B-和N嵌入的磷光铱络合物。单晶结构表明B嵌入多环单元表现出比N嵌入多环单元更好的平面性,这导致不同的π-π堆叠和电气特性。更重要的是,通过控制嵌入的硼或氮原子的数量,将这些发射器的溶液加工的OLED器件作为发光层达到从绿色到深红色(638nm)的磷光颜色变化,并显示出低效率的滚动和转弯 - 电压。特别地,B嵌入式复合IR-BB显示出良好的颜色纯度,窄的全宽度为半最大(1211cm〜(Δ1))和深红光区域中的CIE坐标(0.67,0.31)。值得注意的是,B嵌入式铱络合物也可以与两种不同的Lewis碱(吡啶和DMAP)反应,以通过不同的配位模式形成有趣的B-N Lewis加合物。在该过程中,通过X射线晶体晶晶,〜(1)H NMR和光谱分析证实,通过Lewis碱基的结构和电子性质引发了显着不同的结构和光学变化。

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