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A Small Cationic Organo-Copper Cluster as Thermally Robust Highly Photo-and Electroluminescent Material

机译:小型阳离子有机铜簇,具有高热稳定性和高光致发光和电致发光性能

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摘要

Organic light-emitting diodes (OLEDs) are revolutionizing display applications. In this aspect, luminescent complexes of precious metals such as iridium, platinum, or ruthenium still playing a significant role. Emissive compounds of earth-abundant copper with equivalent performance are desired for practical, large-scale applications such as solid-state lighting and displays. Copper(I)-based emitters are well-known to suffer from weak spin—orbit coupling and a high reorganization energy upon photoexcitation. Here we report a cationic organo-copper cluster [Cu_4(PCP)_3]~+ (PCP = 2,6-(PPh_2)_2C_6H_3) that features suppressed nonradiative decays, giving rise to a robust narrow-band green luminophore with a photoluminescent (PL) efficiency up to 93%. PL decay kinetics corroborated by DFT calculations reveal a complex emission mechanism involving contributions of both thermally activated delayed fluorescence and phosphorescence. This robust compound was solution-processed into a thin film in prototype OLEDs with external quantum efficiency up to 11% and a narrow emission bandwidth (65 nm fwhm).
机译:有机发光二极管(OLED)正在革新显示应用。在这方面,诸如铱,铂或钌的贵金属的发光络合物仍然起着重要作用。对于实际的大规模应用(例如固态照明和显示器),需要具有同等性能的富地球铜的发射化合物。众所周知,基于铜(I)的发射极在光激发时会受到弱的自旋-轨道耦合和高重组能的影响。在这里我们报告了一个阳离子有机铜簇[Cu_4(PCP)_3]〜+(PCP = 2,6-(PPh_2)_2C_6H_3),其抑制了非辐射衰变,产生了带光致发光的坚固的窄带绿色发光体( PL)效率高达93%。通过DFT计算证实的PL衰变动力学揭示了复杂的发射机制,涉及热激活的延迟荧光和磷光。将该坚固的化合物固溶处理为原型OLED薄膜,其外部量子效率高达11%,发射带宽窄(65 nm fwhm)。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第1期|373-381|共9页
  • 作者单位

    Institut fuer Anorganische Chemie und Kristallographie Universitaet Bremen Leobener Straße 7 28359 Bremen Germany;

    G. A. Razuvaev Institute of Organometallic Chemistry Russian Academy of Sciences Tropinina 49 Nizhny Novgorod 603950 Russian Federation;

    Laboratory of Inorganic Chemistry Department of Chemistry and Applied Bioscience ETH Zurich Vladimir Prelog Weg 1 CH-8093 Zuerich Switzerland Laboratory for Thin Films and Photovoltaics Empa—Swiss Federal Laboratories for Materials Science and Technology UEberlandstrasse 129 CH-8600 Duebendorf Switzerland;

    Institute for Physics of Microstructures Russian Academy of Sciences 7 ul. Akademicheskaya Nizhny Novgorod 603950 Russian Federation;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:17:06

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