Synthesis and Solvatochromic Behavior of Zwitterionic Donor–Bridge–Acceptor Systems with Oligo(p-phenylene) Spacers

I. Zharinova, Nicolau Saker Neto, Tze Cin Owyong, J. White, Wallace W. H. Wong
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引用次数: 1

Abstract

Abstract Oligo(p-phenylene)s with a donor phenol group and an acceptor pyridinium moiety separated by one and two p-phenylene units were synthesized by the linear iterative Suzuki–Miyaura coupling method using aryl nonaflates as effective coupling reagents. Zwitterionic forms of these push–pull molecules were generated upon deprotonation of the phenol leading to large redshifts in absorbance maxima. UV-vis absorbance studies also revealed strong dependence of the band position on solvent polarity: a smooth bathochromic shift can be observed with the decrease of the solvent polarity. The molecule with one p-phenylene bridging unit showed the strongest solvatochromic characteristics in the series, spanning the range of 167 nm while moving from polar water to less polar N,N-dimethylformamide. The magnitude of this shift was close to Reichardt's dye — one of the most solvatochromic organic dyes known.
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含低聚(对苯)间隔剂的两性离子供体-桥体-受体体系的合成及其溶剂致变色行为
摘要采用线性迭代Suzuki-Miyaura偶联法,以芳基非配体为有效偶联剂,合成了给体苯酚基团和受体吡啶基团由一个和两个对苯基单元分开的寡聚(对苯基)s。这些推拉分子的两性离子形式是在苯酚去质子化时产生的,导致吸光度最大值的大红移。紫外-可见吸光度研究也揭示了波段位置对溶剂极性的强烈依赖性:随着溶剂极性的降低,可以观察到平滑的色移。具有一个对苯基桥接单元的分子在该系列中表现出最强的溶剂致变色特性,从极性水到极性较低的N,N-二甲基甲酰胺,其溶剂致变色范围为167 nm。这种变化的幅度接近赖克哈特染料——已知的最具溶剂变色性的有机染料之一。
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CiteScore
3.70
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0.00%
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审稿时长
12 weeks
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