Instituto de Química, Facultad de Ciencias, Universidad Austral de Chile, Casilla 567, Valdivia, Chile.
J Phys Chem B. 2010 Sep 23;114(37):11983-92. doi: 10.1021/jp104340k.
The interaction between rhodamine 6G and different polyelectrolytes is analyzed. Structural aspects differentiate these polyelectrolytes, such as the presence of aromatic groups and the number and localization of their respective charges, which may be directly attached to the aromatic groups or to the polymeric main chain. In the case of poly(sodium acrylate), which does not bear aromatic groups, the polyelectrolyte induces cooperative self-stacking between the dyes which is highly sensitive to the ionic strength, due to the predominance of long-range electrostatic interactions between the polymer and the dye. In the case of poly(sodium 4-styrenesulfonate), whose charge is directly attached to the aromatic groups, a high dispersant ability of the dyes is found and the interaction is less dependent on the ionic strength, due to the predominance of short-range aromatic-aromatic interactions between the dye and the polymer. Among the two polyelectrolytes studied for which the polymeric charge is directly attached to the main chain, and separated from the aromatic group, poly(styrene-alt-maleic acid) shows a lower dependence of the interaction on the ionic strength than poly(N-phenylmaleimide-co-acrylic acid) at a comonomer composition of 1:2, due to a higher linear aromatic density and a lower linear charge density, indicating the importance of hydrophobic forces. Both copolymers exhibit a high ability to induce cooperative self-aggregation of the dye.
研究了若丹明 6G 与不同聚电解质的相互作用。结构方面的差异区分了这些聚电解质,例如芳香族基团的存在以及其各自电荷的数量和位置,这些电荷可以直接连接到芳香族基团或聚合物主链上。对于不带有芳香族基团的聚丙烯酸钠,聚电解质诱导染料之间的协同自堆积,由于聚合物和染料之间的长程静电相互作用占主导地位,因此这种自堆积对离子强度非常敏感。对于其电荷直接连接到芳香族基团的聚 4-苯乙烯磺酸钠,发现染料具有很高的分散能力,并且由于染料和聚合物之间的短程芳香族-芳香族相互作用占主导地位,相互作用对离子强度的依赖性较小。在所研究的两种聚电解质中,聚合物电荷直接连接到主链上并与芳香族基团分离,在单体组成比为 1:2 的情况下,聚苯乙烯-马来酸共聚物比聚 N-苯马来酰亚胺-共-丙烯酸的相互作用对离子强度的依赖性更低,这是由于其具有更高的线性芳香族密度和更低的线性电荷密度,表明了疏水相互作用的重要性。两种共聚物都表现出诱导染料协同自聚集的高能力。