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Color-tuning and stability enhancement of cyclometallated iridium (III) complexes in light-emitting electrochemical cells

机译:环境金属化铱(III)配合物在发光电化学电池中的色彩调节和稳定性增强

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摘要

In this thesis, the design and synthesis of cyclometallated iridium(III) complexes for use in light-emitting electrochemical cells (LEECs) are presented, divided into six chapters. Focus is put on the emission color-tuning of various compounds, covering almost the whole visible spectrum between blue and red including first steps towards white-light emission. Secondly, a new systematic approach for an intrinsic stability enhancement of highly pure Ir(III) complexes is investigated. The work is rounded off by the test results of all compounds for potential commercial application in LEECs.udChapter 1 highlights the historical progress of artificial light from the incandescent light bulb towards ultrathin highly-efficient flexible LEECs and their working principle.udChapter 2 describes the synthesis and photophysical properties of orange-emitting Ir(III) complexes supported by theoretical calculations.udChapter 3 addresses the synthesis and characterization of green-emitting Ir(III) complexes supported by theoretical calculations.udChapter 4 reports the design of linking a blue-emitting naphthyl group to an orange-luminescent Ir(III) complex as well as mixing experiments of a blue and orange compound towards white-light emission.udChapter 5 comprises the effect of multiple intra-cation π-stacking interactions on the long-term stability of Ir(III) complexes in LEECs.udChapter 6 concludes the previous chapters and gives a short outlook for future work in the field of Ir(III) based LEECs.ud
机译:本文介绍了用于发光电化学电池(LEEC)的环金属化铱(III)配合物的设计与合成,共分六章。重点放在各种化合物的发射颜色调谐上,几乎涵盖了蓝色和红色之间的整个可见光谱,包括迈向发射白光的第一步。其次,研究了提高高纯Ir(III)配合物内在稳定性的新系统方法。 ud第1章突出了人造光从白炽灯泡向超薄高效柔性LEEC的历史进展及其工作原理。 ud第2章介绍了人工光从白炽灯泡向超薄高效柔性LEEC的历史进展。 ud第3章介绍了理论计算支持的绿色发光Ir(III)配合物的合成和表征。 ud第4章报告了连接a的设计。蓝色发光的萘基与橙色发光的Ir(III)配合物,以及蓝色和橙色化合物对白色发光的混合实验。 ud第5章包含多个阳离子内π堆积相互作用对长时光的影响LEEC中Ir(III)配合物的长期稳定性。 ud第6章总结了前几章,并对未来的研究作了简要展望基于Ir(III)的LEEC。 ud

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    Bünzli Andreas;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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