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Toward design of high-performance optoelectronic materials: comparative theoretical studies on the photophysical and charge transport properties of fluorene-based compounds

机译:高性能光电材料的设计:芴基化合物的光物理和电荷传输性质的比较理论研究

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摘要

As an important building block for optoelectronic applications, various chemical modifications at C9-position of fluorene have been proposed to enhance its performance by suppressing the well-known keto effect. In order to identify different substitution effects on the photo-physical and charge transport properties of fluorene, we systematically study the electronic structures and photo-physical behaviors of fluorene (FR) and its three dimerized counterparts, namely, 9,9'-spirobifiuorene (SBF), 9,9'-bi-fluorenylidene (BFD), and bis(biphenyl-2-2-diyl)allene (BDA), by employing density functional theory calculations. The changes in bond length alternation indicate that the geometrical relaxations of the fluorene unit in its dimerized derivatives are smaller than FR compound. This fact was further proved by the nonradiative decay rate estimated of the first excited singlet state for each compound. Meanwhile, the vibration relaxation analyses suggest that the bridge between two fluorene fragments plays an important role in the nonradiative decay process. In addition, the injection abilities were evaluated in terms of the ionization potentials and electron affinities, and the carrier transport propertieswere discussed in the framework of Marcus theory. We find BFD could be a better ambipolar transport material, and BDA can be used as a high-efficient luminescent building unit with excellent hole transport property.
机译:作为光电应用的重要组成部分,已提出在芴的C9位进行各种化学修饰以通过抑制众所周知的酮效应来增强其性能。为了确定对芴的光物理和电荷传输性质的不同取代作用,我们系统地研究了芴(FR)及其三个二聚体(9,9'-spirobifiuorene)的电子结构和光物理行为。 SBF),9,9'-联芴基(BFD)和双(联苯基-2-2-二基)丙二烯(BDA),采用密度泛函理论计算。键长交替的变化表明芴单元在其二聚衍生物中的几何弛豫小于FR化合物。通过估计每种化合物的第一激发单重态的非辐射衰变速率进一步证明了这一事实。同时,振动弛豫分析表明,两个芴片段之间的桥在非辐射衰变过程中起重要作用。此外,根据电离势和电子亲和力评估了注入能力,并在马库斯理论的框架内讨论了载流子传输性质。我们发现BFD可能是更好的双极性传输材料,并且BDA可以用作具有出色空穴传输性能的高效发光建筑单元。

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