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Cation Polyelectrolyte Interactions in Aqueous Sodium Poly(vinyl sulfonate) as Seen by Ce3+ to Tb3+ Energy Transfer

机译:Ce3 +至Tb3 +能量转移中的阳离子聚电解质在聚(乙烯基磺酸钠)水溶液中的相互作用

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摘要

The interaction between trivalent lanthanide ions and the polyelectrolyte poly(vinyl sulfonate) (PVS) has been studied in aqueous solutions by monitoring lanthanide luminescence. The existence of specific binding of cations by PVS is indicated by blue-shifts in the maximum of the emission of cerium(III), effects on the decay of terbium(III) luminescence, and a slight broadening of the gadolinium(III) electron paramagnetic resonance (EPR). From the isotope effect observed on the decay of luminescence of Tb(III) bound to PVS in H2O and D2O solutions, it is suggested that complexation leads to a decrease in the number of bound water molecules from nine to three. In mixed PVS systems containing Ce(III) and Tb(III), energy transfer is observed. The efficiency of this is found to fit a multiple equilibrium model. The slope of the corresponding plot is shown to provide an effective measure of the extent of lanthanide binding to the polyelectrolyte. This is found to increase with temperature but to decrease upon addition of alcohols. The effect of alcohols is found to depend on their chain length, suggesting the importance of hydrophobic interactions. Increasing ionic strength by adding NaCl increases ion binding, while complex behavior, due to competing effects and precipitation, is observed upon addition of tetraalkylammonium bromide surfactants. Finally, from the energy-transfer data, it is possible to estimate the distance between lanthanide ions on the polyelectrolyte chain. Lanthanide luminescence promises to be an excellent technique for studying the interaction between metal ions and polyelectrolytes in aqueous solutions.
机译:通过监测镧系元素的发光,研究了三价镧系元素离子与聚电解质聚(乙烯基磺酸盐)(PVS)之间的相互作用。 PVS阳离子特异性结合的存在由铈(III)的发射最大值的蓝移,对ter(III)发光衰减的影响以及para(III)顺磁性的轻微展宽表示共振(EPR)。从在H2O和D2O溶液中观察到的对结合到PVS的Tb(III)的发光衰减的同位素效应来看,表明络合导致结合的水分子数量从九个减少到三个。在包含Ce(III)和Tb(III)的混合PVS系统中,观察到能量转移。发现这样做的效率适合多重均衡模型。示出了相应曲线的斜率,以提供镧系元素与聚电解质结合程度的有效量度。发现随着温度增加,但是随着加入醇而减少。发现醇的作用取决于它们的链长,表明疏水相互作用的重要性。通过添加NaCl来增加离子强度会增加离子键合,而在加入四烷基溴化铵表面活性剂时会观察到由于竞争效应和沉淀而产生的复杂行为。最后,从能量转移数据中,可以估计聚电解质链上镧系元素离子之间的距离。镧系元素发光有望成为研究水溶液中金属离子与聚电解质之间相互作用的一项出色技术。

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