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Systematic structure - Property investigations and ion-sensing studies of pyridine-derivatized donor/acceptor tetrakis(arylethynyl)benzenes

机译:系统结构-吡啶衍生的供体/受体四(芳基乙炔基)苯的性质研究和离子传感研究

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[GRAPHICS] Nine structural isomers of a tetrakis(arylethynyl)benzene chromophore functionalized with dibutylaniline and pyridine units as respective donors and acceptors have been synthesized and their steady-state spectroscopic parameters investigated. The effects of small structural variations on the electronic absorption and emission spectra have been explored in evaluation of their potential as optical materials components. These structural variations have predictable consequences and thus allow fine-tuning of the optoelectronic properties for specialized applications. Strong solvatochromism is also displayed. Their response to protonation and metal ion complexation caused dynamic shifts in the emission spectra, providing evidence for a stepwise intramolecular charge-transfer switching phenomenon manifested by either hypsochromic or bathochromic shifts in the fluorescence lambda(max). These shifts are believed to correlate strongly to the relative energies of the fluorophore's HOMO and LUMO levels. The complete array of compounds represents an interesting set of candidates for fluorescent sensing device components.
机译:[图]已经合成了以二丁基苯胺和吡啶单元作为各自的供体和受体官能化的四(芳基乙炔基)苯发色团的九种结构异构体,并研究了它们的稳态光谱参数。在评估其作为光学材料成分的潜力时,已经探索了小的结构变化对电子吸收光谱和发射光谱的影响。这些结构变化会产生可预测的后果,因此可以对专用应用的光电子特性进行微调。还显示出强烈的溶剂变色现象。它们对质子化和金属离子络合的响应导致发射光谱中的动态移位,为逐步出现的分子内电荷转移切换现象提供了证据,该现象通过荧光λ(最大)的变色或红移发生。据信这些变化与荧光团的HOMO和LUMO能级的相对能量高度相关。化合物的完整排列代表了荧光传感设备组件的一组有趣的候选对象。

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