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三联激子辐射在一系列 4,4'-双(N-咔唑基)-2,2'-联苯衍生物中。

Triplet excimer emission in a series of 4,4'-bis(N-carbazolyl)-2,2'-biphenyl derivatives.

机构信息

Experimentalphysik II, Universität Bayreuth, 95440 Bayreuth, Germany.

出版信息

J Phys Chem B. 2011 Jan 27;115(3):414-21. doi: 10.1021/jp107408e. Epub 2010 Dec 28.

Abstract

Carbazole-based materials such as 4,4'-bis(N-carbazolyl)-2,2'-biphenyl (CBP) and its derivatives are frequently used as matrix materials for phosphorescent emitters in organic light emitting diodes (OLED)s. An essential requirement for such matrix materials is a high energy of their first triplet excited state. Here we present a detailed spectroscopic investigation supported by density functional theory (DFT) calculations on two series of CBP derivatives, where CH(3) and CF(3) substituents on the 2- and 2'-position of the biphenyl introduce strong torsion into the molecular structure. We find that the resulting poor coupling between the two halves of the molecules leads to an electronic structure similar to that of N-phenyl-3,6-dimethylcarbazole, with a high triplet-state energy of 2.95 eV. However, we also observe a triplet excimer emission centered at about 2.5-2.6 eV in all compounds. We associate this triplet excimer with a sandwich geometry of neighboring carbazole moieties. For compounds with the more polar CF(3) substituents, the lifetime of the intermolecular triplet excited state extends into the millisecond range for neat films at room temperature. We attribute this to an increased charge-transfer character of the intermolecular excited state for the more polar substituents.

摘要

咔唑类材料,如 4,4'-双(N-咔唑基)-2,2'-联苯(CBP)及其衍生物,常被用作有机发光二极管(OLED)中磷光发射体的基质材料。这类基质材料的一个基本要求是其第一三重激发态的能量要高。在这里,我们通过密度泛函理论(DFT)计算对两个系列的 CBP 衍生物进行了详细的光谱研究,其中联苯的 2-和 2'-位上的 CH(3)和 CF(3)取代基会使分子结构产生强烈的扭转。我们发现,分子两半部分之间的这种不良耦合导致其电子结构类似于 N-苯基-3,6-二甲基咔唑,具有 2.95eV 的高三重态能量。然而,我们也在所有化合物中观察到一个位于 2.5-2.6eV 左右的三重态激基复合物发射。我们将这种三重态激基复合物与相邻咔唑基团的三明治几何形状联系起来。对于具有极性更强的 CF(3)取代基的化合物,在室温下,纯膜中分子间三重态激发态的寿命延长到毫秒级。我们将这归因于极性更强的取代基使分子间激发态的电荷转移特性增强。

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