首页> 外文期刊>The Journal of Organic Chemistry >Tuning the intramolecular charge transfer emission from deep blue to green in ambipolar systems based on dibenzothiophene S, S -dioxide by manipulation of conjugation and strength of the electron donor units
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Tuning the intramolecular charge transfer emission from deep blue to green in ambipolar systems based on dibenzothiophene S, S -dioxide by manipulation of conjugation and strength of the electron donor units

机译:通过操纵电子给体单元的共轭和强度,在基于二苯并噻吩S,S-二氧化物的双极性体系中,将分子内电荷转移发射从深蓝调为绿色

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摘要

The efficient synthesis and photophysical properties of a series of ambipolar donor-acceptor-donor systems is described where the acceptor is dibenzothiophene S,S-dioxide and the donor is fluorene, carbazole, or arylamine. The systems exhibit intramolecular charge transfer (ICT) states (of variable ICT character strengths) leading to fluorescence emission ranging from deep blue to green with moderate to high photoluminescence quantum yields. The emission properties can be effectively tuned by systematically changing the position of substitution on both donor and acceptor units (which affects the extent of conjugation) and the redox potentials of the donor units. The results are supported by cyclic voltammetric data and TD-DFT calculations.
机译:描述了一系列双极性供体-受体-供体系统的有效合成和光物理性质,其中受体是二苯并噻吩S,S-二氧化物,供体是芴,咔唑或芳基胺。该系统展现出分子内电荷转移(ICT)状态(具有可变的ICT特征强度),从而导致荧光发射的范围从深蓝色到绿色,并具有中等到高的光致发光量子产率。可以通过系统地改变供体和受体单元上的取代位置(这会影响共轭程度)和供体单元的氧化还原电位来有效地调节发射特性。结果得到循环伏安数据和TD-DFT计算的支持。

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