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Probing the Hofmeister series beyond water: Specific-ion effects in non-aqueous solvents

机译:探测HofMeister系列超出水:非水溶剂中的特定离子效应

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We present an experimental investigation of specific-ion effects in non-aqueous solvents, with the aim of elucidating the role of the solvent in perturbing the fundamental ion-specific trend. The focus is on the anions: CH3COO- F- Cl- Br- I- ClO4- SCN- in the solvents water, methanol, formamide, dimethyl sulfoxide (DMSO), and propylene carbonate (PC). Two types of experiments are presented. The first experiment employs the technique of size exclusion chromatography to evaluate the elution times of electrolytes in the different solvents. We observe that the fundamental (Hofmeister) series is observed in water and methanol, whilst the series is reversed in DMSO and PC. No clear series is observed for formamide. The second experiment uses the quartz crystal microbalance technique to follow the ion-induced swelling and collapse of a polyelectrolyte brush. Here the fundamental series is observed in the protic solvents water, methanol, and formamide, and the series is once again reversed in DMSO and PC. These behaviours are not attributed to the protic/aprotic nature of the solvents, but rather to the polarisability of the solvents and are due to the competition between the interaction of ions with the solvent and the surface. A rule of thumb is proposed for ion specificity in non-aqueous solvents. In weakly polarisable solvents, the trends in specific-ion effects will follow those in water, whereas in strongly polarisable solvents the reverse trend will be observed. Solvents of intermediate polarisability will give weak specific-ion effects. Published by AIP Publishing.
机译:我们介绍了非水溶剂中特异性离子效应的实验研究,目的是阐明溶剂在扰动基本离子特异性趋势中的作用。重点是阴离子:ch3coo-& F-& cl-& BR-和GT; I-& clo4-& SCN-在溶剂水,甲醇,甲酰胺,二甲基亚甲醚(DMSO)和碳酸亚丙酯(PC)中。提出了两种类型的实验。第一个实验采用尺寸排阻色谱技术的技术,以评估不同溶剂中电解质的洗脱时间。我们观察到,在水和甲醇中观察到基本(Hofmeister)系列,同时在DMSO和PC中逆转。甲酰胺没有观察到清除系列。第二实验使用石英晶体微稳定技术遵循聚电解质刷的离子诱导的溶胀和塌陷。在这里,在质子溶剂水,甲醇和甲酰胺中观察到基本系列,并且该系列再次在DMSO和PC中倒转。这些行为不归因于溶剂的质子/质子性质,而是溶剂的极化性,并且由于与溶剂和表面离子的相互作用之间的竞争。在非水溶剂中的离子特异性提出了一种拇指。在弱极化溶剂,在特定的离子效应的趋势将遵循这些在水中,而在强极化溶剂中的相反的趋势将被观察到。中间体极热性的溶剂将产生弱特异性离子效应。通过AIP发布发布。

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