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首页> 外文期刊>Journal of Organometallic Chemistry >Synthesis, photophysical and electroluminescent properties of green organic light emitting devices based on novel iridium complexes containing benzimidazole ligands
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Synthesis, photophysical and electroluminescent properties of green organic light emitting devices based on novel iridium complexes containing benzimidazole ligands

机译:基于新型含苯并咪唑配体的铱配合物的绿色有机发光器件的合成,光物理和电致发光性能

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摘要

Synthesis, photophysical and electroluminescent analysis of cyclometalated iridium (III) complexes Ir(bpb)2(pic) are reported. The strongly allowed phosphorescence is the result of significant spin-orbit coupling of the Ir center. The lowest energy excited sate is a mixture of metal to ligand charge transfer (MLCT) and π-π~* states. Weak bands at longer wavelength were assigned to ~1MLCT ← S_0 and ~3MLCT ← S_0 transitions. These complexes were doped into emissive region of multilayer organic light emitting diode (OLED) by vapor-deposition emit green electroluminescence with similar currentevoltage characteristics. These Ir(bpb)2(pic) doped OLEDs show appreciable efficiencies as compared with other iridium complex based OLEDs in the literature, which result from efficient trapping and radiative relaxation of singlet and triplet excitons formed in electroluminescent process. Devices with Ir(bpb)2(pic) shows the better performance in terms of brightness and power efficiency with brightness of 130301 cd/m~2 at 14.5 V and 26.2 lm/W at 5.5 V, respectively.
机译:报告了环金属化铱(III)配合物Ir(bpb)2(pic)的合成,光物理和电致发光分析。强烈允许的磷光是Ir中心明显自旋轨道耦合的结果。最低能量激发态是金属到配体电荷转移(MLCT)和π-π〜*态的混合物。较长波长的弱带被指定为〜1MLCT←S_0和〜3MLCT←S_0跃迁。通过汽相沉积将这些配合物掺杂到多层有机发光二极管(OLED)的发射区中,发出具有类似电流电压特性的绿色电致发光。与文献中其他基于铱配合物的OLED相比,这些Ir(bpb)2(pic)掺杂的OLED显示出明显的效率,这归因于有效捕获和辐射弛豫了在电致发光过程中形成的单重态和三重态激子。具有Ir(bpb)2(pic)的器件在亮度和功率效率方面表现出更好的性能,在14.5 V时的亮度分别为130301 cd / m〜2和5.5 V时的亮度为26.2 lm / W。

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