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Novel oligonuclear copper complexes featuring exciting luminescent characteristics

机译:新型寡核铜配合物具有激动的发光特性

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A series of highly luminescent mono-, di-, and trinuclear copper(I) complexes has been synthesized using modular ligand systems of easily accessible N^N, P^P or P^N ligands in order to show the rich structural diversity of copper(I) compounds. Those systems allow for the design of various emitting materials with desired photophysical properties, such as emission colors and high efficiencies. The complexes were characterized with well-established methods such as X-ray crystallographic studies or elemental analysis and, in addition, due to their interesting photoluminescence characteristics, their emission properties were further investigated by means of spectroscopic methods as well as DFT-calculations. In detail, various cationic and neutral mononuclear complexes have been synthesized in order to investigate the photophysical properties of this these different types of emitting compounds. It has been found that neutral copper(I) complexes show superior emission properties (with PLQY up to 89%) compared to their cationic counterparts. Furthermore, a series of dinuclear and trinuclear copper(I) complexes has been synthesized featuring an easy tunable emission maximum from sky blue to deep red (481 nm to 713 nm) with extraordinary high photoluminescence quantum yields up to 99%. In addition, a new crosslinking-technique has been developed to open up the door for a new way to fully solution processed OLED using these promising emitting compounds: Alkyne-substituted emitting complexes crosslink automatically with azide-polymers in a copper-catalyzed alkyne-azide Click reaction.
机译:使用易于接近的N ^ N,P ^ P或P ^ N配体的模块化配体系统合成了一系列高发扬声器单,二 - 和三核铜(I)配合物,以显示铜的丰富结构多样性(i)化合物。这些系统允许设计具有所需的光学性质的各种发射材料,例如发光颜色和高效率。该配合物的特征在于诸如X射线晶体研究或元素分析的良好的方法,并且另外,由于它们有趣的光致发光特性,通过光谱方法以及DFT计算进一步研究了它们的发射性能。详细地,已经合成了各种阳离子和中性单核复合物,以研究这些不同类型的发射化合物的光学性质。已经发现,与阳离子对应物相比,中性铜(I)复合物显示出优异的排放性能(PLQY高达89%)。此外,已经合成了一系列二核和三核铜(I)络合物,其特征在于,从天蓝色到深红色(481nm至713nm),具有非凡的高光致发光量子,产量高达99%。此外,已经开发出一种新的交联技术以使用这些有前途的发射化合物的全面溶液的新方法打开门:炔烃替代的发光复合物与铜催化的炔氧化物中的叠氮聚合物自动用络合物交联单击反应。

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