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首页> 外文期刊>Organometallics >Supramolecular Dendriphores: Anionic Organometallic Phosphors Embedded in Polycationic Dendritic Species
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Supramolecular Dendriphores: Anionic Organometallic Phosphors Embedded in Polycationic Dendritic Species

机译:超分子树状荧光体:嵌入聚阳离子树状物种的阴离子有机金属荧光体。

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Heteroleptic iridium(III) organometallic complexes have been functionalized with sulfate tethers. These systems have been thoroughly characterized spectroscopically. Subsequently these iridium(III) complexes were reacted with polyionic dendritic materials yielding iridium(III) organometallic phosphorescent emitters supramolecularly bound in dendritic materials. The synthesized supramolecular core-shell materials were characterized using a range of standard spectroscopic and spectrometric techniques. Furthermore, a thorough analysis of the photophysical properties (UV-vis absorption/emission, quantum yield, lifetime of emission) was carried out. The tethered sulfate complexes were found to have similar photophysical properties compared to their unfunctionalized analogues. It was found that immobilization of the iridium lumiphores within the core of the dendritic material resulted in quenching of the triplet emitting state. The quenching was found to be a consequence of intramolecular triplet-triplet annihilation resulting in quenching of the emissive state of the phosphorescent organometallics. It was shown by varying the dendrimer generation, and flexibility around the core, that we could alter the extent of triplet-triplet annihilation. It was also discovered that multiple phosphorescent sites existed in a single host-guest polyionic material. All host-guest materials demonstrated this property. Lifetime decay patterns were solved using biexponential statistics, suggesting more than one type of decay. The developed host-guest materials were applied as lumiphores in OLED devices, and showed that in the solid state the observed quenching is diminished.
机译:杂合铱(III)有机金属配合物已被硫酸盐系链官能化。这些系统已经在光谱学上得到了彻底的表征。随后,这些铱(III)配合物与聚离子树状材料反应,产生超分子结合在树状材料中的铱(III)有机金属磷光发射体。合成的超分子核-壳材料使用一系列标准的光谱学和光谱技术进行表征。此外,对光物理性质(UV-可见吸收/发射,量子产率,发射寿命)进行了彻底的分析。发现束缚的硫酸盐配合物与其未官能化的类似物相比具有相似的光物理性质。已经发现,将铱荧光团固定在树状材料的芯内导致三重态发射态的淬灭。发现淬灭是分子内三重态-三重态trip灭的结果,导致磷光有机金属的发射态淬灭。通过改变树枝状聚合物的生成和核心周围的柔韧性,我们可以改变三重态-三重态an灭的程度。还发现在单个主客体聚离子材料中存在多个磷光位点。所有来宾客人的材料都证明了这一特性。使用双指数统计法解决了寿命衰减模式,表明存在多种类型的衰减。已开发的主客体材料被用作OLED器件中的发光体,并显示出在固态下观察到的淬灭现象减少了。

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