首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Spectrochemical investigations in molecularly organized solvent media: evaluation of pyridinium chloride as a selective fluorescence quenching agent of polycyclic aromatic hydrocarbons in aqueous carboxylate-terminated poly(amido) amine dendrimers an
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Spectrochemical investigations in molecularly organized solvent media: evaluation of pyridinium chloride as a selective fluorescence quenching agent of polycyclic aromatic hydrocarbons in aqueous carboxylate-terminated poly(amido) amine dendrimers an

机译:分子有组织的溶剂介质中的光谱化学研究:氯化吡啶鎓作为羧酸盐封端的聚(酰胺)胺树枝状聚合物水溶液中多环芳烃的选择性荧光猝灭剂的评价

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摘要

The ability of pyridinium chloride (PC) to selectively quench alternant as opposed to nonalternant polycyclic aromatic hydrocarbons (PAHs) in organized media is examined. PC was previously shown to be a selective quenching agent of alternant PAHs in neat polar solvents. Carboxylate-terminated poly(amido) amine (PAMAM-CT) dendrimers and anionic surfactants - sodium dodecanoate (SD), sodium octanoate (SO), and sodium dodecylsulfate (SDS)- were chosen as the solubilizing media for this study. Selective quenching of alternant PAHs is observed in the presence of the SDS and SO micelles. However, the extent of PAH quenching in SO is significantly reduced compared to PAHs dissolved in either water or SDS micelles. In the case of the smaller generation 4.5 (G4.5) PAMAM-CT dendrimers, PC was prevented from quenching both alternant and nonalternant PAHs to any appreciable extent. The dendrimer is able to "protect" the PAHs from the PC quencher that resides at the dendrimer surface. Both. SD and G5.5 PAMAM-CT precipitated out of solution with the addition of PC. Differences between traditional micelles and "unimolecular micelle" dendrimers were also examined. These studies further confirm that the PAHs did not reside in the "analogous" palisade region of the dendrimers as they do in micelles. The PAHs must reside in the outermost branches of the dendrimer, but sufficiently far enough away from the charged surface groups, where PC associated, to prevent fluorescence quenching. This work further illustrates the differences between "unimolecular micelle" dendrimers and traditional micelles. [References: 69]
机译:与有组织的介质中的非替代性多环芳烃(PAHs)相反,吡啶鎓氯化物(PC)选择性地淬灭交流剂的能力得到了检验。先前已证明PC是纯极性溶剂中交替PAH的选择性淬灭剂。羧酸盐封端的聚(酰胺)胺(PAMAM-CT)树状聚合物和阴离子表面活性剂-十二烷酸钠(SD),辛酸钠(SO)和十二烷基硫酸钠(SDS)-被选作本研究的增溶介质。在存在SDS和SO胶束的情况下,观察到交替PAHs的选择性淬灭。但是,与溶解在水或SDS胶束中的PAH相比,SO中PAH猝灭的程度大大降低。在较小的4.5(G4.5)PAMAM-CT树状聚合物中,可以防止PC在任何明显的程度上猝灭交替和非交替的PAH。树枝状聚合物能够从位于树枝状聚合物表面的PC淬灭剂“保护” PAH。都。添加PC时,SD和G5.5 PAMAM-CT从溶液中沉淀出来。还检查了传统胶束和“单分子胶束”树状聚合物之间的差异。这些研究进一步证实,PAHs不像其在胶束中那样位于树状聚合物的“类似”栅栏区域。 PAH必须驻留在树枝状聚合物的最外层分支中,但必须远离与PC相关的带电表面基团足够远,以防止荧光猝灭。这项工作进一步说明了“单分子胶束”树枝状聚合物与传统胶束之间的差异。 [参考:69]

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