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膦菲的结构、电子和光学性质的理论研究。

Theoretical studies of the structural, electronic, and optical properties of phosphafluorenes.

机构信息

Jiangsu Key Laboratory for Organic Electronics & Information Displays and Institute of Advanced Materials, Nanjing University of Posts and Telecommunications, 9 Wenyuan Road, Nanjing 210046, China.

出版信息

J Phys Chem A. 2010 Mar 18;114(10):3655-67. doi: 10.1021/jp911624v.

DOI:10.1021/jp911624v
PMID:20148545
Abstract

Phosphafluorenes have drawn increasing attention recently in the applications of organic electronic devices due to their particular optoelectronic properties. To reveal their molecular structures, optoelectronic properties, and structure-property relationships of the newly emerged functional materials, an in-depth theoretical investigation was elaborated via quantum chemical calculations. The optimized geometric and electronic structures in both ground and exited states, the mobility of the hole and electron, the absorption and emission spectra, and the singlet exciton generation fraction of these novel phosphors-containing materials have been studied by density functional theory (DFT), single excitation configuration interaction (CIS), time-dependent density functional theory (TDDFT) methods, and the polarizable continuum model (PCM). The results show that the highest occupied molecular orbitals (HOMOs), the lowest unoccupied molecular orbitals (LUMOs), triplet energies ((3)E(g)), energy gaps (E(g)), as well as some other electronic properties including ionization potentials (IPs), electron affinities (EAs), reorganization energies (lambda), the singlet exciton generation fraction, radiative lifetime, and absorption and emission spectra can be easily tuned by chemical modifications of the phosphorus atom via methyl, phenyl, oxygen, sulfur, or selenium substitution, indicating that the phosphafluorenes are interesting optoelectronic functional materials, which have great potential in the applications of OLEDs, organic solar cells, organic storage, and sensors.

摘要

膦菲咯啉由于其独特的光电性能,在有机电子器件的应用中引起了越来越多的关注。为了揭示这些新出现的功能材料的分子结构、光电性质和结构-性质关系,通过量子化学计算进行了深入的理论研究。利用密度泛函理论(DFT)、单激发组态相互作用(CIS)、含时密度泛函理论(TDDFT)方法和极化连续模型(PCM)研究了这些新型含磷材料在基态和激发态的优化几何和电子结构、空穴和电子的迁移率、吸收和发射光谱以及单重态激子产生分数。结果表明,最高占据分子轨道(HOMO)、最低未占据分子轨道(LUMO)、三重态能量((3)E(g))、能隙(E(g))以及其他一些电子性质,如电离势(IPs)、电子亲合势(EAs)、重组能(lambda)、单重态激子产生分数、辐射寿命以及吸收和发射光谱可以通过磷原子的化学修饰(如甲基、苯基、氧、硫或硒取代)轻松调节,表明膦菲咯啉是一种有趣的光电功能材料,在 OLED、有机太阳能电池、有机存储和传感器等领域有很大的应用潜力。

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