Yu Renyou, Song Yongjun, Chen Mengzhen, He Lei
College of Chemistry, Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, Hubei International Scientific and Technological Cooperation Base of Pesticide and Green Synthesis, Central China Normal University, Wuhan 430079, P. R. China.
Dalton Trans. 2021 Jun 15;50(23):8084-8095. doi: 10.1039/d1dt01320c.
Green to blue-green-emitting cationic iridium complexes free of sp2 C-F bonds, namely [Ir(CF3-dPhTAZ)2(bpy)]PF6 (1), [Ir(CF3-dPhTAZ)2(dmebpy)]PF6 (2) and [Ir(CF3-dPhTAZ)2(phpyim)]PF6 (3), have been designed and synthesized with 3,4-diphenyl-5-(trifluoromethyl)-4H-1,2,4-triazole (CF3-dPhTAZ) as the cyclometalating ligand (C^N) and 2,2'-bipyridine (bpy), 4,4'-dimethyl-2,2'-bipyridine (dmebpy) or 2-(1-phenyl-1H-imidazol-2-yl)pyridine (phpyim) as the ancillary ligand (N^N). In CH3CN solution, complexes 1-3 afford green to blue-green emission centered at 521, 508 and 498 nm, respectively. The electron-withdrawing CF3 group attached at the triazole ring in CF3-dPhTAZ largely blue-shifts (by over 20 nm) the emission of the complex through stabilizing the highest occupied molecular orbital. In doped films, the complexes afford sky-blue emission with near-unity phosphorescent efficiencies. In neat films, the complexes show largely suppressed phosphorescence concentration-quenching, with phosphorescent efficiencies of up to 0.66. Theoretical calculations reveal that the emission of the complexes can arise from either charge-transfer (Ir → C^N/C^N → N^N) or C^N/N^N-centered 3π-π* states, depending on the local environment of the complexes. Solid-state light-emitting electrochemical cells (LECs) based on the complexes afford green to blue-green electroluminescence centered at 525, 517 and 509 nm, respectively, with high current efficiencies of up to 35.1 cd A-1. The work reveals that CF3-dPhTAZ is a promising C^N ligand free of sp2 C-F bonds for constructing efficient cationic iridium complexes with blue-shifted emission.
不含sp2 C-F键的绿色至蓝绿色发光阳离子铱配合物,即[Ir(CF3-dPhTAZ)2(bpy)]PF6 (1)、[Ir(CF3-dPhTAZ)2(dmebpy)]PF6 (2) 和 [Ir(CF3-dPhTAZ)2(phpyim)]PF6 (3),已被设计并合成,其中3,4-二苯基-5-(三氟甲基)-4H-1,2,4-三唑 (CF3-dPhTAZ) 作为环金属化配体 (C^N),2,2'-联吡啶 (bpy)、4,4'-二甲基-2,2'-联吡啶 (dmebpy) 或2-(1-苯基-1H-咪唑-2-基)吡啶 (phpyim) 作为辅助配体 (N^N)。在CH3CN溶液中,配合物1-3分别在521、508和498 nm处发出以绿色至蓝绿色为主的发射光。连接在CF3-dPhTAZ中三唑环上的吸电子CF3基团通过稳定最高占据分子轨道,使配合物的发射光发生了很大程度的蓝移(超过20 nm)。在掺杂薄膜中,这些配合物发出天蓝色光,磷光效率接近100%。在纯薄膜中,这些配合物显示出很大程度上受到抑制的磷光浓度猝灭,磷光效率高达0.66。理论计算表明,配合物的发射光可能源于电荷转移(Ir → C^N/C^N → N^N)或C^N/N^N中心的3π-π*态,这取决于配合物的局部环境。基于这些配合物的固态发光电化学电池(LEC)分别在525、517和509 nm处发出以绿色至蓝绿色为主的电致发光,高电流效率高达35.1 cd A-1。这项工作表明,CF3-dPhTAZ是一种很有前途的不含sp2 C-F键的C^N配体,可用于构建发射光发生蓝移的高效阳离子铱配合物。