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1. 太原理工大学理学院物理系,山西 太原,030024
2. 太原理工大学矿业工程学院,山西 太原,030024
3. 太原理工大学教育部新材料界面与工程重点实验室,山西 太原,030024
收稿日期:2006-08-30,
修回日期:2006-11-24,
纸质出版日期:2007-03-20
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樊文浩, 郝玉英, 房晓红, 许并社, 曾凡桂. 8-羟基喹啉锂及其衍生物电子光谱性质的理论[J]. 发光学报, 2007,28(2): 193-197
FAN Wen-hao, HAO Yu-ying, FANG Xiao-hong, XU Bing-she, ZENG Fan-gui. Theoretical Study on Electronic Spectrum Properties of 8-hydroxyquionline Lithium[J]. Chinese Journal of Luminescence, 2007,28(2): 193-197
运用密度泛函(DFT/B3LYP)方法对三种吸电子基(C
6
H
5
、CN、Cl)取代的8-羟基喹啉锂(Liq)所形成的18种衍生物进行对比
从中找出最稳定的三种衍生物
并在此基础上应用含时密度泛函(TD-DFT)方法和单激发组态相互作用(CIS)分析了取代基对Liq前线分子轨道和电子光谱的影响。结果表明:吸电子取代基主要影响所在环的前线分子轨道
其影响程度和取代基的吸电子能力有关;同时取代位置的不同和取代基的共轭效应会导致电子光谱的移动方向不同
取代基在苯酚环上时使Liq电子光谱蓝移
而在吡啶环上时使Liq电子光谱红移
取代基共轭效应大电子光谱红移。该计算结果与实验结果吻合。
Studies and applications of organic light emitting display (OLED) have indicated that it is one of the promising technologies of planar display. Metaloquinolates with high stability and high fluorescence quantum efficiency are widely applied in organic EL devices. The experimental and theoretical investigations of these complexes have been widely implemented
while the theoretical study of Liq attracted little attention. The singles configuration interaction (CIS )and the time-dependent density functional theory (TD-DFT) are main methods for theoretical study on molecular excited state and electronic spectrum. In this paper
the frontier molecular orbit and electronic spectrum of Liq and its derivates are calculated by CIS and TD-DFT method. The effect of substituting group on the frontier molecular orbit and the electronic spectrum were analyzed. All this will provide a theoretical basis for the molecular structure design of organic electroluminescent materials. We designed 18 kinds of derivates which were obtained by substitution of three kinds electron-withdrawing group (C
6
H
5
CN or Cl) at different position
respectively. The derivates of 8-hydroxyquioline lithium (Liq) were investigated quantitatively by means of DFT/B3LYP. The most stable substituted derivates (2-C
6
H
5
-Liq
5-CN-Liq and 6-Cl-Liq) were selected according to the lowest energy rule. Basing on that
the absorption spectrum is calculated by TD-DFT
and the structures of excited states were optimized by CIS method. On the optimized-structures of excited states
the emission wavelength was predicted by TD method. And then the effect of substituting group on the frontier molecular orbit and electronic spectrum were discussed. The results indicated that the electronic withdrawing group affected mainly the electron cloud distribution of the frontier molecular orbit
which was correlated to the electronic withdrawing ability of ligand. The electron-withdrawing group on phenoy ring makes the HOMO-LUMO band gap increased. The increase of band gap then leads to a blue shift of electronic spectrum. Substitute position was related to electronic spectrum shift. The electron-withdrawing group on pyriding ring makes the HOMO-LUMO band gap decreased. The decrease of band gap then leads to a red shift of electronic spectrum. The simulative peaks at 269.94
373.26 nm of the UV absorption spectra and the peak at 461.7 nm of emission spectra of Liq are closed to the peaks at 259.8
363.8 nm of the experimental UV absorption spectra and the peak at 452 nm of emission spectra of Liq. It indicates that the TD-DFT method do well in predicting the electronic spectrum of metaloquinolates.
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