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含三芳基硼部分的多功能磷光铂(II)配合物用于高效有机发光二极管发光体的理论研究与设计

Theoretical study and design of multifunctional phosphorescent platinum(II) complexes containing triarylboron moieties for efficient OLED emitters.

作者信息

Wu Yong, Shan Guo-Gang, Li Hai-Bin, Wu Shui-Xing, Ren Xin-Yao, Geng Yun, Su Zhong-Min

机构信息

Institute of Functional Material Chemistry, Faculty of Chemistry, Northeast Normal University, Changchun 130024, China.

出版信息

Phys Chem Chem Phys. 2015 Jan 28;17(4):2438-46. doi: 10.1039/c4cp04919e. Epub 2014 Dec 10.

Abstract

The geometries, electronic structures, photophysical properties and spin-orbit coupling (SOC) effects in the radiative process for the recently synthesized complexes (Bppy)Pt(acac) (1) and (BNppy)Pt(acac) (2) as well as the designed complexes 3-6 were investigated by DFT and TD-DFT calculations, to reveal the influences of the functional ligands on charge injection ability and phosphorescence efficiency of emitters. It is found that compared with electron acceptor complex 1, complexes 2-6 have lower ionization potentials and comparable high electronic affinities, which are suited for bipolar luminescent materials. The results also demonstrated that Bppy complexes 1, 5 and 6 have more (3)MLCT compositions in T1 emitting states compared with BNppy complexes 2-4, which results in strong SOC and fast kr. Thus, the phosphorescence efficiency of 1 is higher than that of 2. In addition, 5 and 6 have the balanced charge transport and better hole injection ability when the hole-transporting ligand is incorporated to 1. Therefore, 5 and 6 can server as promising candidates for efficient multifunctional phosphorescent OLED emitters owing to their ambipolar characters, balanced charge carrier injection/transport features and high phosphorescence quantum efficiency.

摘要

通过密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)计算,研究了最近合成的配合物(Bppy)Pt(acac)(1)和(BNppy)Pt(acac)(2)以及设计的配合物3 - 6的几何结构、电子结构、光物理性质和辐射过程中的自旋轨道耦合(SOC)效应,以揭示功能配体对发光体电荷注入能力和磷光效率的影响。研究发现,与电子受体配合物1相比,配合物2 - 6具有更低的电离势和相当高的电子亲和势,适合作为双极性发光材料。结果还表明,与BNppy配合物2 - 4相比,Bppy配合物1、5和6在T1发射态中具有更多的(3)MLCT组成,这导致了强SOC和快速的kr。因此,1的磷光效率高于2。此外,当空穴传输配体与1结合时,5和6具有平衡的电荷传输和更好的空穴注入能力。因此,5和6因其双极性特性、平衡的电荷载流子注入/传输特性和高磷光量子效率,有望成为高效多功能磷光有机发光二极管发光体的候选材料。

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