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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A star-shaped bipolar host material based on carbazole and dimesitylboron moieties for fabrication of highly efficient red, green and blue electrophosphorescent devices
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A star-shaped bipolar host material based on carbazole and dimesitylboron moieties for fabrication of highly efficient red, green and blue electrophosphorescent devices

机译:一种基于咔唑和二甲磺隆部分的星形双极主体材料,用于制造高效的红色,绿色和蓝色电致磷光器件

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摘要

A new bipolar host material based on carbazole and dimesitylboron moieties, 3,6-bis(dimesitylboryl)-9-(4-(dimesitylboryl)phenyl) carbazole (BDDPC), has been successfully synthesised and characterised by elemental analysis, nuclear magnetic resonance spectroscopy, mass spectrometry and thermogravimetric analysis. The electrochemical and photophysical properties of BDDPC are studied by both experimental and theoretical methods. BDDPC exhibits excellent thermal stability (T_d = 234 °C), electrochemical stability, high fluorescence quantum yield (0.95) and high triplet energy (2.83 eV). A red phosphorescent organic light-emitting diode (PhOLED) device comprising BDDPC as the host material and Os(bpftz)_2(PPh2Me)_2 as the dopant is fabricated and displays promising electrophosphorescence properties with a turn-on voltage of 3.0 V, a maximum brightness of 12 337 cd m~(-2) and a maximum current efficiency of 11.04 cd A~(-1). Similarly, BDDPC is used to fabricate a green PhOLED device with lr(ppy)_2(acac) as the dopant, possessing a turn-on voltage of 2.5 V, a maximum brightness of 26 473 cd m~(-2) and a maximum current efficiency of 38.60 cd A~(-1). Furthermore, a blue PhOLED device with BDDPC as the host material and Flrpic as the dopant is fabricated with a turn-on voltage of 3.0 V, a maximum brightness of 7622 cd m~(-2) and a maximum current efficiency of 7.39 cd A~(-1). It is anticipated that BDDPC has great potential in manufacturing PhOLED devices for display or lighting applications.
机译:一种基于咔唑和二甲磺隆部分,3,6-双(二甲磺酰基)-9-(4-(二甲磺酰基)苯基)咔唑(BDDPC)的新型双极主体材料已成功合成并通过元素分析,核磁共振波谱进行了表征,质谱和热重分析。通过实验和理论方法研究了BDDPC的电化学和光物理性质。 BDDPC具有出色的热稳定性(T_d = 234°C),电化学稳定性,高荧光量子产率(0.95)和高三重态能量(2.83 eV)。制造了以BDDPC为主体材料和Os(bpftz)_2(PPh2Me)_2作为掺杂剂的红色磷光有机发光二极管(PhOLED)器件,该器件具有理想的电致磷光性能,最大开启电压为3.0 V亮度为12337 cd m〜(-2),最大电流效率为11.04 cd A〜(-1)。类似地,BDDPC用于制造以lr(ppy)_2(acac)作为掺杂剂的绿色PhOLED器件,该器件具有2.5 V的开启电压,26 473 cd m〜(-2)的最大亮度和最大的电流效率为38.60 cd A〜(-1)。此外,以3.0V的开启电压,7622 cd m〜(-2)的最大亮度和7.39 cd A的最大电流效率制造了一种以BDDPC为主体材料,Flrpic为掺杂剂的蓝色PhOLED器件。 〜(-1)。预计BDDPC在制造用于显示或照明应用的PhOLED器件方面具有巨大潜力。

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