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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly efficient cuprous complexes with thermally activated delayed fluorescence and simplified solution process OLEDs using the ligand as host
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Highly efficient cuprous complexes with thermally activated delayed fluorescence and simplified solution process OLEDs using the ligand as host

机译:高效的亚铜配合物,具有热激活的延迟荧光和使用配体作为主体的简化溶液处理OLED

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摘要

Two strongly luminescent complexes, [Cu(czpzpy)(PPh3)]BF4 (1) and [Cu(czpzpy)(POP)]BF4 (2), bearing a new carbazole-based diimine ligand (czpzpy = 2-(9H-carbazolyl)-6-(1H-pyrazolyl)pyridine, PPh3 = triphenylphosphine, and POP = bis[2-(diphenylphosphine) phenyl] ether) were synthesized and characterized. Complex 2 emits intense thermally activated delayed fluorescence (TADF) with high photoluminescence quantum yields (PLQYs) of up to 0.98 at room temperature in the solid state. A highly efficient solution-processed OLED, with an emissive layer was spin-coated using a mixture of the diimine ligand czpzpy and the starting material, [Cu(CH3CN)(2))(POP)]BF4, was fabricated with peak efficiencies of 6.36% (external quantum efficiency, EQE) and 17.53 cd A(-1) (current efficiency, CE) and a maximum brightness of 3251 cd m(-2). These performances are nearly identical to those of the device whose emissive layer was comprised of complex 2 and czpzpy, indicating that this simplified process, which omits the preparation and purification of the emissive complex, is practicable in preparing efficient solution-processed OLEDs. In this approach, czpzpy, which bears a carbazole unit, was used both as a ligand to form the emissive cuprous complex and as a host matrix for the formed emitter.
机译:两种强发光配合物,[Cu(czpzpy)(PPh3)] BF4(1)和[Cu(czpzpy)(POP)] BF4(2),带有新的咔唑基二亚胺配体(czpzpy = 2-(9H-咔唑基)合成并表征了)-6-(1H-吡唑基)吡啶,PPh3 =三苯基膦和POP =双[2-(二苯基膦基苯基)醚]。配合物2发出强烈的热激活延迟荧光(TADF),固态时在室温下具有高达0.98的高光致发光量子产率(PLQYs)。使用二亚胺配体czpzpy和起始原料[Cu(CH3CN)(2))(POP)] BF4的混合物旋涂具有发射层的高效固溶处理OLED,其峰值效率为6.36%(外部量子效率,EQE)和17.53 cd A(-1)(电流效率,CE),最大亮度为3251 cd m(-2)。这些性能与发光层由配合物2和czpzpy组成的设备的性能几乎相同,这表明省略了发光配合物的制备和纯化的简化工艺可用于制备有效的溶液加工OLED。在这种方法中,带有咔唑单元的czpzpy既用作配体以形成发射性亚铜配合物,又用作形成的发射体的基质。

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