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具有1,3,4-恶二唑环金属化配体的发射蓝绿色光的阳离子铱配合物:合成、光物理和电化学性质、理论研究及电致发光器件

Blue-green emitting cationic iridium complexes with 1,3,4-oxadiazole cyclometallating ligands: synthesis, photophysical and electrochemical properties, theoretical investigation and electroluminescent devices.

作者信息

Wang Zhen, He Lei, Duan Lian, Yan Jun, Tang Ruiren, Pan Chunyue, Song Xiangzhi

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan Province 410083, P. R. China.

出版信息

Dalton Trans. 2015 Sep 28;44(36):15914-23. doi: 10.1039/c5dt02083b. Epub 2015 Aug 17.

Abstract

Two cationic iridium complexes, namely [Ir(dph-oxd)2(bpy)]PF6 (1) and [Ir(dph-oxd)2(pzpy)]PF6 (2), using 2,5-diphenyl-1,3,4-oxadiazole (dph-oxd) as the cyclometallating ligand and 2,2'-bipyridine (bpy) or 2-(1H-pyrazol-1-yl)pyridine (pzpy) as the ancillary ligands, have been synthesized, and their photophysical and electrochemical properties have been comprehensively investigated. In solution, both complexes emit efficient blue-green light. For complex 1, the light emission in a neat film is remarkably red-shifted; in solid state, it gives an intriguing piezochromic phenomenon. Compared with archetype [Ir(ppy)2(bpy)]PF6 (ppy is 2-phenylpyridine), complex 1 shows a largely stabilized HOMO (highest occupied molecular orbital) level, induced by the electron-deficient 1,3,4-oxadiazole (oxd) heterocycle of dph-oxd, which results in an enlarged energy gap and blue-shifted emission. Compared with complex 1, complex 2 shows an enhanced LUMO (lowest unoccupied molecular orbital) level, caused by the electron-rich pzpy ancillary ligand, but they exhibit similar emission energy in solution. For both complexes, theoretical calculations reveal that their blue-green emission in solution arises primarily from the (3)π-π* states centered on dph-oxd; moreover, complex 1 bears close-lying (3)π-π* and (3)CT (charge-transfer) states, underlying its remarkably red-shifted emission in the neat film and unique piezochromic behavior in the solid state. Solid state light emitting electrochemical cells (LECs) based on complexes 1 and 2 give efficient yellow and green-blue light, with peak current efficiencies of 18.3 and 5.2 cd A(-1), respectively. It is demonstrated that oxd-type cyclometallating ligands are promising as an avenue to stabilize the HOMOs and tune emission properties of cationic iridium complexes to a large extent.

摘要

合成了两种阳离子铱配合物,即[Ir(dph - oxd)₂(bpy)]PF₆(1)和[Ir(dph - oxd)₂(pzpy)]PF₆(2),它们使用2,5 - 二苯基 - 1,3,4 - 恶二唑(dph - oxd)作为环金属化配体,2,2'-联吡啶(bpy)或2 - (1H - 吡唑 - 1 - 基)吡啶(pzpy)作为辅助配体,并对其光物理和电化学性质进行了全面研究。在溶液中,两种配合物均发射高效的蓝绿色光。对于配合物1,其在纯膜中的发光显著红移;在固态下,它呈现出有趣的压致变色现象。与原型[Ir(ppy)₂(bpy)]PF₆(ppy为2 - 苯基吡啶)相比,配合物1由于dph - oxd中缺电子的1,3,4 - 恶二唑(oxd)杂环导致其最高占据分子轨道(HOMO)能级大幅稳定,这导致能隙增大且发射蓝移。与配合物1相比,配合物2由于富电子的pzpy辅助配体导致其最低未占据分子轨道(LUMO)能级增强,但它们在溶液中表现出相似的发射能量。对于这两种配合物,理论计算表明它们在溶液中的蓝绿色发射主要源于以dph - oxd为中心的(³)π - π态;此外,配合物1具有相近的(³)π - π和(³)电荷转移(CT)态,这是其在纯膜中显著红移发射以及在固态下独特压致变色行为的基础。基于配合物1和2的固态发光电化学电池(LEC)发出高效的黄色和绿蓝色光,峰值电流效率分别为18.3和5.2 cd A⁻¹。结果表明,oxd型环金属化配体有望在很大程度上稳定阳离子铱配合物的HOMO并调节其发射性质。

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