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高效红色荧光分子中热激子与聚集诱导发光结合的机理的理论研究。

Theoretical study on the mechanism of hot excitons combined with aggregation-induced emission in efficient red fluorescent molecules.

机构信息

School of Petrochemical Engineering, Shenyang University of Technology, 30 Guanghua Street, Liaoyang, 111003, P. R. China.

State Key Laboratory of Supramolecular Structure and Materials, Jilin University, Changchun, 130012, P. R. China.

出版信息

Phys Chem Chem Phys. 2022 Jul 27;24(29):17632-17640. doi: 10.1039/d2cp02552c.

Abstract

Fluorescent emitters with the hot exciton mechanism combined with aggregation induced emission (AIE) character show prospective applications in organic light emitting diodes (OLEDs). However, theoretical studies on amorphous states are limited. In this work, a theoretical study is performed on the photophysical properties of the reported compound 4-(7-(10-ethyl-10-phenothiazin-3-yl)benzo[][1,2,5]thiadiazol-4-yl)-,-diphenylaniline (PBTPA), which possesses a hot exciton mechanism and AIE. The aggregation states of this molecule in a film are given by molecular dynamics (MD) simulations, and then the photophysical properties are studied by using the QM/MM method with the consideration of the solid-state effect (SSE). The results explain the hot exciton and AIE mechanism of the molecule. First, there is a hot exciton channel between the S and T state of the PBTPA. Second, the conformational changes of PBTPA between the ground state and the excited state are restricted in the aggregate state. Last, in the low frequency region, the rotation motion is suppressed, and then the reorganization energy and Huang-Rhys (HR) factor in the aggregate state are much smaller. Therefore, the molecules show strong fluorescence efficiency in the aggregated state.

摘要

具有热激子机制并结合聚集诱导发射 (AIE) 特性的荧光发射器在有机发光二极管 (OLED) 中有很有前景的应用。然而,对非晶态的理论研究还很有限。在这项工作中,对报道的化合物 4-(7-(10-乙基-10-吩噻嗪-3-基)苯并[][1,2,5]噻二唑-4-基)-,-二苯基苯胺 (PBTPA) 的光物理性质进行了理论研究,该化合物具有热激子机制和 AIE。通过分子动力学 (MD) 模拟给出了该分子在薄膜中的聚集态,然后通过考虑固态效应 (SSE) 的 QM/MM 方法研究了光物理性质。结果解释了分子的热激子和 AIE 机制。首先,PBTPA 的 S 和 T 态之间存在热激子通道。其次,在聚集态下,PBTPA 在基态和激发态之间的构象变化受到限制。最后,在低频区域,旋转运动受到抑制,然后聚集态下的重组能和 Huang-Rhys (HR) 因子小得多。因此,分子在聚集态下表现出很强的荧光效率。

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