首页> 外文会议>NATO Advanced Study Institute on Metal-Ligand Interactions: Molecular-, Nano-, Micro-, and Macro-Systems in Complex Environments >Electronic properties, spectroscopic properties and monomolecular isomerization processes of prototype oled compound aluminum tris (Quinolin-8-olate)facial and meridianal isomers
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Electronic properties, spectroscopic properties and monomolecular isomerization processes of prototype oled compound aluminum tris (Quinolin-8-olate)facial and meridianal isomers

机译:原型OLED化合物铝TRIS(喹啉-8- olate)面部和共生异构体的电子性质,光谱性质和单分子异构化方法

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Aluminum tris(quinolin-8-olate) (Alq_3 in the following) represents a prototype compound for studies in the field of organic LEDs (OLEDs) and it is the chosen substance in many OLEDs which have hit the market. Alq_3 meridianal and facial isomers ground state and spectroscopic properties have been studied by DFT and TD-DFT computations. The differences between the two isomers have been compared with the differences between δ-phase crystals and meridianal Alq_3 crystals. In this way, the possibility that the facial isomer is contained in the Alq_3 δ-phase has been discussed. This work has allowed the assignment of the experimental absorption bands of meridianal Alq_3 up to about 255nm and the theoretical prediction of facial Alq_3 absorption spectrum. The comparison between the absorption and emission characteristics of the two isomers has suggested the spectroscopic properties to be used to distinguish the facial isomer from the meridianal isomer. Indications have been obtained about the excited state kinetics of the more studied meridianal Alq_3. The evaluation of the reaction surface of the isolated Alq_3 allowed the determination of its monomolecolar isomerization paths and their energetics. Thus, it has been possible to associate the known high rate of the Alq_3 isomerizations to the dissociative processes which involve the Al-N bond. Furthermore, new suggestions about the Alq_3 chemistry have been introduced. This represents a first glance at the understanding of undesirable processes as atmospheric-induced decomposition and other degradation paths which limit the Alq_3 technological applications.
机译:铝Tris(喹啉-8- olate)(以下中的ALQ_3)表示用于在有机LED(OLED)领域的研究的原型化合物,并且在许多达到市场的OLED中是所选物质。通过DFT和TD-DFT计算研究了ALQ_3经络和面部异构体地位和光谱性质。将两种异构体之间的差异与δ相晶体和子内Alq_3晶体之间的差异进行了比较。以这种方式,已经讨论了面部异构体包含在ALQ_3δ相中的可能性。这项工作允许分配经络Alq_3的实验吸收带,高达约255nm,以及面部Alq_3吸收光谱的理论预测。两种异构体的吸收和排放特性之间的比较表明,用于将面部异构体与子内异构体区分开的光谱性质。关于更新的经络Alq_3的激发态动力学已经获得了适应症。分离的Alq_3的反应表面的评价允许测定其单体裂解异构化路径及其能量学。因此,可以将已知的高速率与AlQ_3异构化的高速率与涉及Al-N键的解离过程相关联。此外,已经引入了关于ALQ_3化学的新建议。这代表了理解不希望的过程,作为大气引起的分解和其他限制ALQ_3技术应用的其他降解路径的首先浏览。

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