溶液中电聚合5-取代吲哚的荧光性质

P. Jennings, Anita C Jones, A. Mount
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引用次数: 13

摘要

5-取代吲哚单体、5-氰吲哚、吲哚-5-羧酸、5-氯吲哚、5-溴吲哚和5-甲氧基吲哚的电聚合得到由环三聚体和环三聚体链(聚合物)组成的氧化还原活性膜。单体、三聚体和聚合物是荧光的,并在室温下用稳态荧光光谱对其进行了研究。与单体相比,三聚体的激发和发射光谱明显向更长的波长偏移,这与更大程度的电子离域相一致。5-取代吲哚单体的发射性质取决于溶剂极性和5-取代基的性质;相比之下,三聚体物种表现出很少的依赖性。控制电化学条件可以改变三聚体和聚合物的相对比例。聚合物的激发和发射光谱比三聚体的激发和发射光谱转移到更长的波长,更宽,强度更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fluorescence properties of electropolymerised 5-substituted indoles in solution
Electropolymerisation of the 5-substituted indole monomers, 5-cyanoindole, indole-5-carboxylic acid, 5-chloroindole, 5-bromoindole and 5-methoxyindole results in a redox-active film consisting of a cyclic trimer and chains of linked cyclic trimer (polymer). The monomer, trimer and polymer species are fluorescent and have been studied using steady state fluorescence spectroscopy in solution at room temperature. The excitation and emission spectra of the trimer species show a significant shift to longer wavelength compared to the monomer, consistent with the greater extent of electron delocalisation. The emission properties of the 5-substituted indole monomers are very dependent upon solvent polarity and the nature of the 5-substituent; in contrast, the trimer species show little dependence. Controlling the electrochemical conditions allows variation of the relative proportions of trimer and polymer species. The excitation and emission spectra of the polymer species are shifted to longer wavelength, are broader and are of lower intensity than those of the trimer.
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