首页> 外文期刊>The Journal of Organic Chemistry >Expanded π-electron systems, tri(phenanthro)hexaazatriphenylenes and tri(phenanthrolino)hexaazatriphenylenes, that are self-assembled to form one-dimensional aggregates
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Expanded π-electron systems, tri(phenanthro)hexaazatriphenylenes and tri(phenanthrolino)hexaazatriphenylenes, that are self-assembled to form one-dimensional aggregates

机译:自组装形成一维聚集体的扩展π电子系统,三(菲基)六氮杂苯并菲和三(菲咯啉)六氮杂苯并菲

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This paper reports the self-assembling and electrochemical nature of hexaazatriphenylene-based electron-deficient heteroaromatics with an expanded π-electron system. The tri(phenanthro)hexaazatriphenylenes (TPHAT-Cs) and tri(phenanthrolino)hexaazatriphenylenes (TPHAT-Ns) were prepared by condensation reactions of the corresponding phenanthrenequinones and phenanthrolinediones, respectively, with hexaaminobenzene. Their electron affinity was indicated from cyclic voltammetry measurements, in which the first reduction potentials were evaluated at around -1.7 V (vs Fc/Fc~+) in dichloromethane. In nonpolar and polar solvents and in the film state, the TPHAT-Cs and TPHAT-Ns formed one-dimensional aggregates with an H-type parallel stacking mode. In the MALDI-TOF mass spectra, significant peaks were seen at several multiples of the parent ion up to tetramer aggregates. The ~1H NMR spectra indicated a line-broadening effect due to the aggregation. The UV-vis and fluorescence spectra showed a concentration dependence, which is attributed to a dynamic exchange between the monomer and aggregate species. The order of the aggregative nature was estimated from the concentration dependence and the fluorescence quantum yield. By replacement of the peripheral aromatic moieties instead of the phenanthrene (TPHAT-Cs) with the phenanthroline (TPHAT-Ns), the aggregative nature was enhanced.
机译:本文报道了具有扩展的π电子体系的六氮杂三亚苯基缺电子杂芳族化合物的自组装和电化学性质。三(菲基)六氮杂苯并菲(TPHAT-Cs)和三(菲咯啉基)六氮杂苯并菲(TPHAT-Ns)是通过相应的菲醌和菲二酮与六氨基苯的缩合反应制备的。通过循环伏安法测量表明了它们的电子亲和力,其中在二氯甲烷中在-1.7 V(vs Fc / Fc〜+)附近评估了第一还原电位。在非极性和极性溶剂中以及在薄膜状态下,TPHAT-Cs和TPHAT-Ns以H型平行堆叠模式形成一维聚集体。在MALDI-TOF质谱图中,在母离子的数倍处直至四聚体聚集体处均出现了明显的峰。 〜1H NMR光谱表明由于聚集而产生的线增宽作用。紫外可见光谱和荧光光谱显示出浓度依赖性,这归因于单体与聚集体之间的动态交换。从浓度依赖性和荧光量子产率估计聚集性质的顺序。通过用菲咯啉(TPHAT-Ns)代替菲(TPHAT-Cs)代替周围的芳香族部分,可以提高聚合性。

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