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Efficient red phosphorescent OLEDs employing 2-phenylcarbazoles-based hole transport materials

机译:使用基于2-苯基咔唑的空穴传输材料的高效红色磷光OLED

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A new series of 9-hexylcarbazole-based hole transporting materials (HTMs) with naphthyl or pyrenyl substitutions (i.e. compounds 1 and 2) were synthesized and characterized. Compound 2 possesses an adequate ionization potential and triplet energy gap of 5.54 eV and 2.48 eV respectively, which makes 2 a suitable HTM for use in red phosphorescent organic light-emitting diodes (OLEDs). In contrast, a rather higher ionization potential of 1 was estimated to be 5.72 eV, thus the p-type conducting dopant should be introduced in device fabrication. The respective peak efficiencies of compounds 1 and 2-based OLEDs with the p-type dopant were recorded at 15.4 % (26.0 cd/A and 24.2 lm/W) and 17.3 % (26.1 cd/A and 19.1 lm/W), demonstrating their high potential for EL applications.
机译:合成并表征了一系列新的具有萘基或pyr基取代基(即化合物1和2)的基于9-己基咔唑的空穴传输材料(HTM)。化合物2分别具有5.54 eV和2.48 eV的足够的电离势和三重态能隙,这使2成为适用于红色磷光有机发光二极管(OLED)的HTM。相反,据估计较高的电离电势为1.72 eV,因此应在器件制造中引入p型导电掺杂剂。记录具有p型掺杂剂的化合物1和2的OLED的各自峰值效率分别为15.4%(26.0 cd / A和24.2 lm / W)和17.3%(26.1 cd / A和19.1 lm / W),这表明它们在电致发光应用中的潜力很大。

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