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基于取代 2-苯基咪唑并[1,2-a]吡啶配体的铱(III)配合物的磷光效率和橙到蓝绿色调谐的理论研究。

Theoretical study on phosphorescence efficiency and color tuning from orange to blue-green of Ir(III) complexes based on substituted 2-phenylimidazo[1,2-a]pyridine ligand.

机构信息

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, People's Republic of China.

出版信息

J Comput Chem. 2011 Apr 30;32(6):1033-42. doi: 10.1002/jcc.21682. Epub 2010 Oct 12.

Abstract

The geometrical structures, phosphorescence quantum yields, and electroluminescence (EL) efficiency of six iridium(III) complexes containing 2-phenylimidazo[1,2-a]pyridine ligand are investigated by density functional theory (DFT), which show a wide color tuning of photoluminescence from orange (λ(em) = 550 nm) to blue-green (λ(em) = 490 nm). The calculated results shed some light on the reasons of the remarkably manipulated excited-state and EL properties through substitution effect. The Mulliken charge calculation reveals that attached -CF(3) groups on phenyl and imidazo[1,2-a]pyridine (impy) moieties (4) can make both of them as electron-deficient region, which will lead to the contraction of the whole coordination sphere and strengthen the metal-ligand interaction. While attaching two -CF(3) groups on phenyl ring can make it more electron-deficient, which will induce electron transferring from acac and impy fragment to phenyl ring, and also result in the contracted structure. The largest metal-to-ligand charge transfer ((3)MLCT) character and the smaller S(1)-T(1) energy gap (ΔE(S(1)-T(1))) value increase the emission quantum yields of 4 and 6 than other complexes. For EL efficiency, because of the similar highest occupied molecular orbital (HOMO) levels of 4 and 6 to that of holes injection material poly(N-vinylcarbazole) (PVK) and the larger dipole moments, majority hole will be accumulated on the HOMO of 4 and 6. Combination with the lower lowest unoccupied molecular orbital energy levels compared with PVK, the recombination zones of 4 and 6 can be well confined within emitting material layer (EML) and lead to the higher EL efficiency.

摘要

六种含有 2-苯基咪唑并[1,2-a]吡啶配体的铱(III)配合物的几何结构、磷光量子产率和电致发光(EL)效率通过密度泛函理论(DFT)进行了研究,其光致发光颜色可调范围很宽,从橙色(λ(em)= 550nm)到蓝绿色(λ(em)= 490nm)。计算结果阐明了通过取代效应显著改变激发态和 EL 性质的原因。Mulliken 电荷计算表明,在苯基和咪唑并[1,2-a]吡啶(impy)部分(4)上附加-CF(3)基团可以使它们都成为缺电子区域,这将导致整个配位球收缩并增强金属-配体相互作用。而在苯基环上附加两个-CF(3)基团可以使它更缺电子,从而导致电子从 acac 和 impy 片段转移到苯基环上,也导致结构收缩。最大的金属-配体电荷转移((3)MLCT)特性和较小的 S(1)-T(1)能隙(ΔE(S(1)-T(1)))值增加了 4 和 6 的发射量子产率,高于其他配合物。对于 EL 效率,由于 4 和 6 的最高占据分子轨道(HOMO)能级与空穴注入材料聚(N-乙烯基咔唑)(PVK)相似,并且具有较大的偶极矩,因此大部分空穴将积累在 4 和 6 的 HOMO 上。结合与 PVK 相比,较低的最低未占据分子轨道能级,4 和 6 的复合区可以很好地限制在发射材料层(EML)内,从而导致更高的 EL 效率。

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