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研究卤素取代的无金属有机分子的磷光性能:一项理论研究。

Investigating phosphorescence capability of halogen-substituted metal-free organic molecules: A theoretical study.

作者信息

Sun Xiaofei, Gong Huihui, Zhang Yuxi, Tian Yuxin, Zhang Hongxing, Bai Fuquan, Wang Jian, Zhong Keli, Kong Chuipeng

机构信息

College of Food Science and Technology, College of Chemistry and Chemical Engineering, Bohai University, Food Safety Key Lab of Liaoning Province, National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Jinzhou 121013, China; International Joint Research Laboratory of Nano-Micro Architecture Chemistry, Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun 130023, China.

College of Food Science and Technology, College of Chemistry and Chemical Engineering, Bohai University, Food Safety Key Lab of Liaoning Province, National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Jinzhou 121013, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2021 Jul 5;255:119642. doi: 10.1016/j.saa.2021.119642. Epub 2021 Mar 9.

Abstract

The radiative and non-radiative decay processes of five compounds are investigated through a comprehensive computational approach, for the aim of investigating the effect of different halogen substituents to the phosphorescent emission. Their optimal configurations at the ground (S) and lowest triplet excited (T) states are obtained and the calculated phosphorescent emission spectra are comparable with the experimental values. For 1,4-di(9H-carbazol-9-yl)benzene (PDCz), the electronic transition is between the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO), while for the four halides, the electronic transitions are attributed to several molecular orbitals. According to calculations, 9,9'-(2,5-diiodo-1,4-phenylene)bis(9H-carbazole) (PDICz) possesses the largest radiative decay rate constant (k) and non-radiative decay rate constant (k), which can be attributed to the strong spin-orbital coupling from the heavy iodine atom. However, the phosphorescent quantum efficiency (Φ) of PDICz is lower than that of 9,9'-(2,5-dibromo-1,4-phenylene)bis(9H-carbazole) (PDBCz), implying that a comprehensive consideration is necessary. Furthermore, by analyzing the vibrational mode, we have confirmed that the reorganization energies are also influenced by the different halogen atoms. While the dominated factor that determines the k and k comes from the spin-orbital coupling. We expect that our research findings will be beneficial to the newly designed organic phosphorescent materials in the future.

摘要

通过一种综合计算方法研究了五种化合物的辐射和非辐射衰变过程,目的是研究不同卤素取代基对磷光发射的影响。获得了它们在基态(S)和最低三重激发态(T)的最佳构型,并且计算得到的磷光发射光谱与实验值具有可比性。对于1,4-二(9H-咔唑-9-基)苯(PDCz),电子跃迁发生在最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)之间,而对于四种卤化物,电子跃迁归因于几个分子轨道。根据计算,9,9'-(2,5-二碘-1,4-亚苯基)双(9H-咔唑)(PDICz)具有最大的辐射衰变率常数(k)和非辐射衰变率常数(k),这可归因于重碘原子的强自旋-轨道耦合。然而,PDICz的磷光量子效率(Φ)低于9,9'-(2,5-二溴-1,4-亚苯基)双(9H-咔唑)(PDBCz),这意味着需要进行综合考虑。此外,通过分析振动模式,我们证实了重组能也受不同卤素原子的影响。而决定k和k的主导因素来自自旋-轨道耦合。我们期望我们的研究结果将对未来新设计的有机磷光材料有益。

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