首页> 外文OA文献 >Modulating the Emission Intensity of Poly-(9,9-bis(6‘-N,N,N-trimethylammonium)hexyl)-Fluorene Phenylene) Bromide Through Interaction with Sodium Alkylsulfonate Surfactants
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Modulating the Emission Intensity of Poly-(9,9-bis(6‘-N,N,N-trimethylammonium)hexyl)-Fluorene Phenylene) Bromide Through Interaction with Sodium Alkylsulfonate Surfactants

机译:通过与烷基磺酸钠表面活性剂的相互作用调节聚-(9,9-双(6'-N,N,N-三甲基铵)己基)-芴苯)溴化物的发射强度

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摘要

The interaction between the cationic HTMA-PFP (Poly-(9,9-bis(6‘-N,N,N-trimethylammonium)hexyl-fluorene phenylene) bromide) and oppositely charged sodium n-alkyl sulfonate surfactants of different chain lengths has been studied in DMSO−water solutions (4% v/v) by UV−visible absorption, fluorescence spectroscopy, fluorescence lifetimes, electrical conductivity, and 1H NMR spectroscopy. Polymer−surfactant interactions lead to complex spectroscopic behaviors which depends on surfactant concentration. At low surfactant concentrations, the observed strong static fluorescence quenching of fluorescence seems to be associated with formation of aggregates between polymer chains neutralized through interaction with surfactants. This is supported by conductivity and by analysis of absorption spectra deconvoluted at each surfactant concentration using an adapted iterative method. In contrast, above the surfactant critical micelle concentration, there is a strong fluorescence enhancement, leading in some cases to higher intensities than in the absence of surfactants. This is attributed to the transformation of the initially formed aggregates into some new aggregate species involving surfactant and polymer. These changes in HTMA-PFP fluorescence as a function of n-alkyl sulfonate concentration are important for the general understanding of polymer−surfactant interactions, and the aggregates formed may be important as novel systems for applications of these conjugated polyelectrolytes.
机译:阳离子HTMA-PFP(聚(9,9-双(6'-N,N,N-三甲基铵)己基-芴亚苯基)溴化物)和带相反电荷的不同链长的正烷基磺酸钠表面活性剂之间的相互作用为在DMSO-水溶液(4%v / v)中通过紫外可见吸收,荧光光谱,荧光寿命,电导率和1H NMR光谱进行了研究。聚合物-表面活性剂相互作用导致复杂的光谱行为,这取决于表面活性剂的浓度。在低表面活性剂浓度下,观察到的强烈的静态荧光猝灭似乎与通过与表面活性剂相互作用中和的聚合物链之间形成聚集体有关。这由电导率和使用适应性迭代方法在每种表面活性剂浓度下反卷积的吸收光谱分析来支持。相反,在表面活性剂临界胶束浓度以上,有很强的荧光增强作用,在某些情况下会导致强度比不存在表面活性剂时更高。这归因于最初形成的聚集体转变成一些涉及表面活性剂和聚合物的新聚集体。 HTMA-PFP荧光随正烷基磺酸盐浓度变化的这些变化对于聚合物-表面活性剂相互作用的一般理解很重要,并且形成的聚集体可能作为应用这些共轭聚电解质的新型系统很重要。

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