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首页> 外文期刊>European journal of inorganic chemistry >Tris(cyclometalated) Iridium(III) Phosphorescent Complexes with 2-Phenylthiazole-Type Ligands: Synthesis, Photophysical, Redox and Electrophosphorescent Behavior
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Tris(cyclometalated) Iridium(III) Phosphorescent Complexes with 2-Phenylthiazole-Type Ligands: Synthesis, Photophysical, Redox and Electrophosphorescent Behavior

机译:具有2-苯基噻唑型配体的三(环金属化)铱(III)磷光配合物:合成,光物理,氧化还原和电致磷光行为

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摘要

Tris(cyclometalated) iridium(III) phosphorescent emitters with 2-phenylthiazole-type ligands have been designed and synthesized. Their photophysical properties, electrochemical behavior and electroluminescent (EL) performance can be influenced by introducing fluorine atoms to the phenyl moiety of the thiazole-based ligands. The phosphorescent emission maxima can be shifted from 546 nm to 517 nm by increasing the number of the fluorine atoms attached to the ligands of the iridium(III) complexes. Furthermore, the HOMO levels for these phosphorescent complexes exhibit a gradual decrease from -5.28 eV to -5.59 eV with the introduction of fluorine atoms. Owing to the character of their electronic structures, the phosphorescent emitters are preferentially excited by means of a host-guest energy-transfer process in the organic light-emitting diodes (OLEDs). Accordingly, their EL performance is strictly restricted by the triplet energy level difference between the phosphorescent dopant and the host materials. The thiazole-based cyclometalated iridium(III) triplet emitters can exhibit maximum EL efficiencies with ηext = 7.87%, η_L = 23.62 cdA~(-1) and η_p = 13.46 lmW~(-1).
机译:设计并合成了具有2-苯基噻唑型配体的三(环金属化)铱(III)磷光发射体。通过将氟原子引入基于噻唑的配体的苯基部分,可以影响其光物理性质,电化学行为和电致发光(EL)性能。通过增加附着在铱(III)配合物配体上的氟原子数,磷光发射最大值可以从546 nm移到517 nm。此外,随着引入氟原子,这些磷光络合物的HOMO水平显示出从-5.28eV逐渐降低至-5.59eV。由于其电子结构的特性,磷光发射体优先通过有机发光二极管(OLED)中的客体能量转移过程被激发。因此,它们的EL性能受到磷光掺杂剂和主体材料之间的三重态能级差的严格限制。噻唑基环金属化铱(III)三重态发射体可以表现出最大的EL效率,ηext= 7.87%,η_L= 23.62 cdA〜(-1)和η_p= 13.46 lmW〜(-1)。

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