Theoretical study on the mechanism of aggregation-induced emission in red thermally activated delayed fluorescence molecules: trans/ cis-arrangement effect

被引:1
|
作者
Chi, Yanwei [1 ]
Xu, Mengyao [1 ]
Liang, Yue [1 ]
Pan, Yuyu [1 ]
Yang, Bing [2 ]
机构
[1] Shenyang Univ Technol, Sch Petrochem Engn, 30 Guanghua St, Liaoyang 111003, Peoples R China
[2] Jilin Univ, State Key Lab Supramol Struct & Mat, Changchun 130012, Peoples R China
基金
中国国家自然科学基金;
关键词
Red thermally activated delayed fluorescence; Aggregation -induced emission; Theoretical study; Multi -scale simulation; Trans; cis -arrangement effect; DENSITY FUNCTIONALS; TADF; THERMOCHEMISTRY; PREDICTION; EXCHANGE;
D O I
10.1016/j.orgel.2023.106811
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Fluorescent emitters with both high exciton utilization and luminescence efficiency show promising applications in organic light-emitting diodes (OLEDs), especially those with simultaneously aggregation-induced emission (AIE) and thermally activated delayed fluorescence (TADF). In this work, we performed multi-scale simulations to investigate the photophysical properties of the reported red AIDF compounds T-DA-1, C-DA-1, T-DA-2 and C -DA-2, molecules with the same donor-acceptor group but with very different emission wavelengths and pho-toluminescence quantum yields (phi PL) due to different connection points. The packing modes of molecules in film are obtained by molecular dynamics (MD) simulations, the crystal structure is given from the experiment, and then the photophysical properties with the consideration of the solid-state effect are studied by using the combined quantum mechanics and molecular mechanics (QM/MM) method. Natural transition orbitals (NTOs), adiabatic singlet-triplet state energy levels, reorganization energies and HR factors are analysed in detail. In addition, radiative and non-radiative transitions as well as inter-system crossing (ISC) and reverse inter-system crossing (RISC) processes are also investigated. Our results indicate that there is an important role of different substitution positions on the photo physical properties of TADF molecules. The trans -arrangement substitutions restrict the geometry variations, hinder the non-radiative energy consumption process, and promote the radiative process of TADF molecules. In addition, the trans -arrangement in the aggregated state has a smaller LEST and a larger SOC, which could favorite the RISC process. Last, the films and crystals of the trans -arrangement molecules have stronger 7C-7C stacking, it limit the movement of molecules, which may inhibit the nonradiative deactivation caused by intramolecular torsional and vibrational excited-energy loss. Our work reasonably elucidates the experimental results and highlights the effect of different substitution positions on TADF properties. This could provide a theoretical perspective for designing efficient AIDF molecules.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Synthesis and optical properties of m-phenyl carbazole derivatives showing aggregation-induced emission and thermally activated delayed fluorescence
    Nakagawa, Yuta
    Miki, Kensyo
    Yamaguchi, Yoshihiro
    CHEMISTRY LETTERS, 2025, 54 (02)
  • [42] Triazatruxene-based small molecules with thermally activated delayed fluorescence, aggregation-induced emission and mechanochromic luminescence properties for solution-processable nondoped OLEDs
    Chen, Yonghong
    Wang, Shumeng
    Wu, Xiaofu
    Xu, Yuxiang
    Li, Hua
    Liu, Yang
    Tong, Hui
    Wang, Lixiang
    JOURNAL OF MATERIALS CHEMISTRY C, 2018, 6 (46) : 12503 - 12508
  • [43] Theoretical study on the aggregation-induced emission mechanism of anthryl-tetraphenylethene
    Pan, Xin
    Lu, Yajie
    Zhou, Weixing
    Zhang, Wenyu
    Yang, Ling
    Zhu, Chaoyuan
    Lin, Sheng-Hsien
    JOURNAL OF THE CHINESE CHEMICAL SOCIETY, 2023, 70 (03) : 737 - 746
  • [44] Isomer engineering for red thermally activated delayed fluorescence molecules: Luminescence mechanism study and rational molecular design
    Zhao, Xin
    Liu, Huanling
    Mu, Qingfang
    Xie, Zhen
    Song, Yuzhi
    Lin, Lili
    Fan, Jianzhong
    Xu, Yuanyuan
    CHEMICAL PHYSICS LETTERS, 2023, 833
  • [45] Face-to-face order-packed mode promotes thermally activated delayed fluorescence to achieve stronger aggregation-induced emission
    Wu, Xiulan
    Gong, Chengbin
    Jiang, Xin
    Gao, Jingran
    Li, Ming
    He, Rongxing
    Chen, Ping
    Shen, Wei
    JOURNAL OF SCIENCE-ADVANCED MATERIALS AND DEVICES, 2022, 7 (02):
  • [46] Asymmetric Thermally Activated Delayed Fluorescence Materials With Aggregation-Induced Emission for High-Efficiency Organic Light-Emitting Diodes
    Li, Huanhuan
    Zhi, Yibin
    Dai, Yizhong
    Jiang, Yunbo
    Yang, Qingqing
    Li, Mingguang
    Li, Ping
    Tao, Ye
    Li, Hui
    Huang, Wei
    Chen, Runfeng
    FRONTIERS IN CHEMISTRY, 2020, 8
  • [47] Self-Host Thermally Activated Delayed Fluorescence Material with Aggregation-Induced Emission Character: Multi-Functional Applications in OLEDs
    Dong, Ruizhi
    Li, Jiuyan
    Liu, Di
    Li, Deli
    Mei, Yongqiang
    Ma, Mengyao
    Jiang, Jingyang
    ADVANCED OPTICAL MATERIALS, 2021, 9 (24)
  • [48] Multiple Donor Modification of Boron-Based Emitters to Produce Aggregation-Induced Emission and Thermally Activated Delayed Fluorescence for Blue OLEDs
    Devulapally, Mohan Gandhi
    Jeong, Yeonju
    Lee, Jae Hee
    Kwon, Min Jeong
    Kang, Sunwoo
    Kim, Taekyung
    Hong, Wan Pyo
    ADVANCED OPTICAL MATERIALS, 2025,
  • [49] Thermally Activated Delayed Fluorescence and Aggregation Induced Emission with Through-Space Charge Transfer
    Tsujimoto, Hiroyuki
    Ha, Dong-Gwang
    Markopoulos, Georgios
    Chae, Hyun Sik
    Baldo, Marc A.
    Swager, Timothy M.
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (13) : 4894 - 4900
  • [50] A theoretical perspective of the relationship between the structures and luminescence properties of red thermally activated delayed fluorescence molecules
    Liu, Huanling
    Zhang, Kai
    Zou, Haipei
    Mu, Qingfang
    Wang, Xiaorui
    Song, Yuzhi
    Lin, Lili
    Wang, Chuan-Kui
    Fan, Jianzhong
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (28) : 17140 - 17154