首页> 外文期刊>Journal of chemical theory and computation: JCTC >Optical Absorptions of New Blue-Light Emitting Oligoquinolines Bearing Pyrenyl and Triphenyl Endgroups Investigated with Time-Dependent Density Functional Theory
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Optical Absorptions of New Blue-Light Emitting Oligoquinolines Bearing Pyrenyl and Triphenyl Endgroups Investigated with Time-Dependent Density Functional Theory

机译:随时间变化的密度泛函理论研究带有吡啶基和三苯基端基的新型蓝光寡喹啉的光吸收

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摘要

The optical absorption spectra of a family of four n-type conjugated oligomers, oligoquinolines, which can be commercially used to develop high-performance light-emitting diodes for their many desirable properties, have been recently calculated from time-depedent density functional theory (TDDFT) within the adiabatic approximation for the dynamical exchange-correlation potential. In this work, we investigate the optical absorption of two new family members of the blue-light emitting oligoquinolines bearing pyrenyl and triphenyl endgroups in gas phase and chloroform (CHCI3) solution employing the adiabatic TDDFT. The ionization potentials and electron affinities of these two oligoquinoline molecules are also calculated with the ground-state DFT, from which the adiabatic dynamical exchange-correlation potential is constructed. We show that the calculated optical absorptions are in good agreement with experiments. The ionization potentials obtained with the DFT methods agree well with the experimental estimates, while the electron affinities are significantly underestimated in comparison with experiments. A natural transition orbital analysis for selected excited states with the largest oscillator strengths shows that the electronic charge is slightly redistributed in the process of electronic excitations.
机译:最近,根据时变性密度泛函理论(TDDFT)计算出了四种n型共轭低聚物,寡喹啉家族的光学吸收光谱,这些化合物可用于商业开发高性能发光二极管,从而具有许多理想的性能。 )在绝热近似中的动态交换相关势。在这项工作中,我们研究了使用绝热TDDFT在气相和氯仿(CHCI3)溶液中的两个带有pyr基和三苯基端基的蓝色发光低聚喹啉的新家族成员的吸光度。还利用基态DFT计算了这两个寡喹啉分子的电离势和电子亲和力,由此构建了绝热的动态交换相关势。我们表明,计算的光吸收与实验良好吻合。用DFT方法获得的电离势与实验估计吻合得很好,而与实验相比,电子亲和力被大大低估了。对具有最大振荡器强度的选定激发态的自然跃迁轨道分析表明,在电子激发过程中,电荷略有重新分布。

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