首页> 外文期刊>Inorganic Chemistry Frontiers >Unsymmetric 2-phenylpyridine (ppy)-type cyclometalated Ir(III) complexes bearing both 5,9-dioxa-13b-boranaphtho[3,2,1-de]anthracene and phenylsulfonyl groups for tuning optoelectronic properties and electroluminescence abilities
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Unsymmetric 2-phenylpyridine (ppy)-type cyclometalated Ir(III) complexes bearing both 5,9-dioxa-13b-boranaphtho[3,2,1-de]anthracene and phenylsulfonyl groups for tuning optoelectronic properties and electroluminescence abilities

机译:非对称的2-苯基吡啶(PPY) - 型环核化IR(III)配合物,其轴承为5,9-DIOxa-13b-硼酰基[3,2,1-de]蒽和苯磺酰基,用于调整光电性能和电致发光能力

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摘要

A series of 2-phenylpyridine (ppy)-type cyclometalating ligands containing rigid 5,9-dioxa-13b-boranaphtho[3,2,1-de]anthracene (OBA) units have been developed. Together with different ppy-type cyclometalating ligands with a phenylsulfonyl group (-SO2Ph) substituted at different positions, new unsymmetric heteroleptic cyclometalated Ir(III) complexes have been successfully synthesized. Their photophysical, electrochemical and electroluminescence (EL) behaviors have been fully characterized. In addition, both time-dependent functional theory (TD-DFT) and natural transition orbital (NTO) theoretical results have been obtained to gain insight into the optoelectronic behaviors of these unsymmetric Ir(III) complexes with OBA units. The NTO results indicate that the features of the lowest triplet excited states (T-1) can be delicately tuned by combination between the OBA-based cyclometalating ligand and another ppy-type ligand with the -SO2Ph group. Importantly, these unsymmetric Ir(III) complexes can exhibit very high phosphorescence quantum yield (Phi(p)) higher than 0.90 due to the highly rigid OBA unit which can effectively restrain non-radiative processes. In addition, an electron injection/transporting (EI/ET) ability can be conferred to these unsymmetric heteroleptic cyclometalated Ir(III) complexes by both OBA and -SO2Ph moieties. Taking advantage of these merits, organic light-emitting diodes (OLEDs) based on these unsymmetric heteroleptic cyclometalated Ir(III) complexes can show a high maximum external quantum efficiency (eta(ext)) of 12.8%, a current efficiency (eta(L)) of 51.1 cd A(-1), and a power efficiency (eta(P)) of 40.5 lm W-1 for a yellowish-green device, while EL efficiencies for red devices are 6.8%, 13.9 cd A(-1), and 12.8 lm W-1, respectively. All these results indicate the good potential of the rigid OBA unit in developing functional phosphorescent emitters.
机译:已经开发出含有刚性5,9-DIOxa-13b-Boranhaphtho [3,2,1-de]蒽(OBA)单位的一系列2-苯基吡啶(PPY)型 - 型环核酸配体。与不同位置取代的苯磺酰基(-SO 2PH)的不同的PPY型环荷酸配体一起,已经成功地合成了新的未对称异常的环荷芳烃IR(III)配合物。它们的光物理,电化学和电致发光(EL)行为已经完全表征。此外,已经获得了时间依赖的功能理论(TD-DFT)和天然过渡轨道(NTO)理论结果,以获得与OBA单位的这些非对称IR(III)复合物的光电行为的洞察力。 NTO结果表明,最低三重型激发态(T-1)的特征可以通过基于OBA的环荷酸配体和与-SO 2PH基团的另一种PPY型配体之间的组合进行精确调整。重要的是,由于能够有效抑制非辐射过程的高度刚性OBA单元,这些非对称IR(III)复合物可以表现出高于0.90的非常高的磷光量子产率(PHI(P))。另外,通过OBA和-SO2PH部分可以赋予电子注射/传输(EI / ET)能力通过OBA和-SO2PH部分赋予这些非对称的异常的环素醛化IR(III)配合物。利用这些优点,基于这些不对称的异常环荷芳烃IR(III)配合物的有机发光二极管(OLED)可以显示出高最大的外部量子效率(ETA(eTA))12.8%,电流效率(ETA(L 51.1 CD A(-1)的电力效率(ETa(P))为黄绿色器件的40.5 LM W-1,而红色器件的EL效率为6.8%,13.9cd a(-1分别为12.8 LM W-1。所有这些结果表明,刚性OBA单元在开发功能磷光发射器中的良好电位。

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