Synthesis, characterization and DFT study of new anthracene-based semiconducting polyethers for OLED application

轨道能级差 密度泛函理论 化学 有机发光二极管 部分 循环伏安法 佩多:嘘 荧光 电致发光 分子轨道 电离能 吸收(声学) 质子核磁共振 傅里叶变换红外光谱 吸收光谱法 光化学 聚合物 物理化学 计算化学 电离 分子 材料科学 有机化学 化学工程 电化学 电极 量子力学 复合材料 离子 物理 图层(电子) 工程类
作者
Chaima Mahmoudi,Rihab Chouk,Khouloud Baatout,Nejmeddine Jaballah,Mohamed Khalfaoui,Mustapha Majdoub
出处
期刊:Journal of Molecular Structure [Elsevier]
卷期号:1251: 131993-131993 被引量:7
标识
DOI:10.1016/j.molstruc.2021.131993
摘要

New soluble semiconducting anthracene-based polyethers (An-BPS and An-TDP) were synthetized via the Williamson polycondensation of 9,10-dichloromethylanthracene with 4,4′-thiodiphenol (TDP) and bisphenol S (BPS), respectively. The polymers were investigated by density functional theory (DFT): the structural and optoelectronic properties, frontier molecular orbitals (HOMO/LUMO), as well as the infrared, absorption and fluorescence spectra were discussed. The polyethers structures were confirmed by NMR and FTIR spectroscopies, revealing good agreements between experimental and theoretical results. Quasi-identical absorption and blue emission properties were obtained for both polymers in dilute solutions, with a higher fluorescence efficiency for An-BPS. The cyclic voltammetry analysis of these electrochemically active materials showed a higher electron affinity for An-BPS and a lower ionization potential for An-TDP. The DFT calculations showed that the HOMO/LUMO frontier energy distributions are confined on the anthracene moiety in An-BPS. However in An-TDP, the LUMO distribution is localized on anthracene group, while the HOMO is on the TDP unit. The electric behavior of organic light-emitting diodes (OLEDs) based on these macromolecular structures has been investigated via numerical simulation using Silvaco TECAD software. Good electrical properties are estimated, with a low turn on voltages of 3.1 V and 2.9 V for An-TDP and An-BPS, respectively. However, An-BPS showed improved current conductivity, which makes it a good candidate for OLEDs.

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