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表面活性剂链长对水溶性共轭聚合物荧光性质的影响。

Influence of the surfactant chain length on the fluorescence properties of a water-soluble conjugated polymer.

作者信息

Laurenti Marco, Rubio-Retama Jorge, Garcia-Blanco Francisco, López-Cabarcos Enrique

机构信息

Physical Chemistry Department, Pharmacy Faculty, Complutense University, Madrid 28040, Spain.

出版信息

Langmuir. 2008 Dec 2;24(23):13321-7. doi: 10.1021/la802246g.

Abstract

In this work, we report the influence of surfactant chain length and surfactant concentration on the photoluminescence (PL) of water-soluble pi-conjugated poly(thienyl ethylene oxide butyl sulfonate) (PTE-BS). We have used alkylammomium surfactants with 8, 9, 10, and 12 carbon atoms per hydrocarbon chain. The surfactant concentration was varied from 0.125 the critical micelle concentration (CMC) up to 2 times the CMC. The results show that at premicellar concentrations all the surfactants promote the polymer aggregation inducing an increase in the interchain charge transfer by pi-pi interactions, which competes with PL emission processes. However, in the premicellar range, the polymer PL emission is sharply affected by the surfactant chain length. Thus, the PL is quenched by the surfactants with the shortest tails, whereas the surfactants with the longest ones provoke an enhancement of the PL emission. This behavior has been associated with the capacity of the surfactants with the longest hydrocarbon chains to accommodate their tails inside the polymer, obstructing the appearance of pi-pi interchain interactions during aggregation and reducing intrachain defects. By contrast, at the CMC, the surfactant chain length does not modify the PL emission, since the excess of surfactant inhibits polymer aggregation, thus enhancing the efficiency of light emissive processes.

摘要

在本工作中,我们报道了表面活性剂链长和表面活性剂浓度对水溶性π共轭聚(噻吩基环氧乙烷丁基磺酸盐)(PTE-BS)光致发光(PL)的影响。我们使用了每个烃链含有8、9、10和12个碳原子的烷基铵表面活性剂。表面活性剂浓度从临界胶束浓度(CMC)的0.125倍变化到CMC的2倍。结果表明,在胶束前浓度下,所有表面活性剂均促进聚合物聚集,通过π-π相互作用诱导链间电荷转移增加,这与PL发射过程相互竞争。然而,在胶束前范围内,聚合物PL发射受到表面活性剂链长的显著影响。因此,具有最短尾部的表面活性剂会淬灭PL,而具有最长尾部的表面活性剂会导致PL发射增强。这种行为与具有最长烃链的表面活性剂将其尾部容纳在聚合物内部的能力有关,这会阻碍聚集过程中π-π链间相互作用的出现并减少链内缺陷。相比之下,在CMC时,表面活性剂链长不会改变PL发射,因为过量的表面活性剂会抑制聚合物聚集,从而提高发光过程的效率。

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