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Dynamic light scattering studies of the effects of salts on the diffusivity of cationic and anionic cavitands

机译:盐对阳离子和阴离子空泡体扩散率影响的动态光散射研究

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摘要

Although alkali halide salts play key roles in all living systems, the physical models used to describe the properties of aqueous solutions of salts do not take into account specific ion–ion interactions. To identify specific ion–ion interactions possibly contributing to the aggregation of proteins, we have used dynamic light scattering (DLS) to probe the aggregation of charged cavitands. DLS measurements of negatively charged >1 in the presence of a range of alkali metal halides reveal no significant aggregation of host >1 as a function of the nature of the cation of the added salt. Only at high concentrations could trace amounts of aggregation be detected by 1H NMR spectroscopy. Contrarily, >1 was readily aggregated and precipitated by ZnCl2. In contrast, although fluoride and chloride did not induce aggregation of positively charged host >2, this cavitand exhibited marked aggregation as a function of bromide and iodide concentration. Specifically, bromide induced small but significant amounts of dimerization, whilst iodide induced extreme aggregation. Moreover, in these cases aggregation of host >2 also exhibited a cationic dependence, with an observed trend Na+ > Li+ > K+ ≈ Cs+. In combination, these results reveal new details of specific ion pairings in aqueous solution and how this can influence the properties of dissolved organics.
机译:尽管碱金属卤化物盐在所有生物系统中都起着关键作用,但用于描述盐水溶液特性的物理模型并未考虑特定的离子-离子相互作用。为了确定可能导致蛋白质聚集的特定离子-离子相互作用,我们使用了动态光散射(DLS)来探测带电空洞的聚集。在一定范围的碱金属卤化物存在下,带负电荷的> 1 的DLS测量表明,主体> 1 的聚集没有明显的根据所加盐阳离子的性质而变化。 1 1H NMR光谱只能检测到高浓度的聚集。相反,> 1 容易被ZnCl2聚集和沉淀。相反,尽管氟化物和氯化物不会诱导带正电荷的宿主> 2 聚集,但该空泡分子表现出显着的聚集,其与溴化物和碘化物浓度有关。具体而言,溴化物引起少量但大量的二聚化,而碘化物则引起极端聚集。此外,在这些情况下,宿主> 2 的聚集也表现出阳离子依赖性,并且观察到趋势为Na + + + ≈Cs + 。综合起来,这些结果揭示了水溶液中特定离子对的新细节,以及这如何影响溶解的有机物的性质。

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