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Revealing resonance effects and intramolecular dipole interactions in the positional isomers of benzonitrile-core thermally activated delayed fluorescence materials

机译:揭示苄腈核热活化延迟荧光材料位置异构体中的共振效应和分子内偶极相互作用

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摘要

We report on the properties of the three positional isomers of (2,7-di-tert-butyl-9,9-dimethylacridin-10(9H)-yl)benzonitrile, which are found to have comparable donor steric environments and donor-acceptor dihedral angles. An unexpected intramolecular dipole interaction imparts a unique molecular geometry to the ortho-linked isomer, while comparison of the meta- and para-isomers uncovers how positional differences in acceptor strengths (a consequence of differences in aromatic pi-system electron density) lead to very different triplet harvesting and emission properties. These positional-isomer effects on TADF follow the well-known aromatic directing rules from organic synthesis, in keeping with their common origin arising from contributions of multiple electronic resonance structures. Understanding these positional effects and methods of dihedral control is critical to the future design of efficient TADF emitters.
机译:我们报告(2,7-二叔丁基-9,9-二甲基吖啶-10-10-10-10(9h) - yl)苄腈的三个位置异构体的性质,其发现具有可比较的供体间环境和供体受体 二面角。 意外的分子内偶极子相互作用赋予邻邻的异构体的独特的分子几何形状,而Meta-和对比者的比较揭示了受体强度的位置差异(芳香族Pi-System电子密度的差异的结果)导致非常 不同的三态收割和排放性能。 这些位置 - 异构体对TADF的影响遵循来自有机合成的众所周知的芳香指导规则,以与多种电子共振结构的贡献相同的共同来源。 了解这些位置效果和二位控制方法对于未来的有效TADF发射器的设计至关重要。

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