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反离子对带电界面处界面水的影响及其与霍夫迈斯特序列的关系。

Counterion effect on interfacial water at charged interfaces and its relevance to the Hofmeister series.

机构信息

Molecular Spectroscopy Laboratory, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan and.

出版信息

J Am Chem Soc. 2014 Apr 30;136(17):6155-8. doi: 10.1021/ja412952y. Epub 2014 Apr 17.

Abstract

Specific counterion effects represented by Hofmeister series are important for a variety of phenomena such as protein precipitations, surface tensions of electrolytes solutions, phase transitions of surfactants, etc. We applied heterodyne-detected vibrational sum-frequency generation spectroscopy to study the counterion effect on the interfacial water at charged interfaces and discussed the observed effect with relevance to the Hofmeister series. Experiments were carried out for model systems of positively charged cetyltrimethylammonium monolayer/electrolyte solution interface and negatively charged dodecylsulfate monolayer/electrolyte interface. At the positively charged interface, the intensity of the OH band of the interfacial water decreases in the order of the Hofmeister series, suggesting that the adsorbability of halide anions onto the interface determines the Hofmeister order as previously proposed by Zhang and Cremer (Curr. Opin. Chem. Biol. 2006, 10, 658-663). At the negatively charged interfaces, on the other hand, the OH band intensity does not depend significantly on the countercation, whereas variation in the hydrogen-bond strength of the interfacial water is well correlated with the Hofmeister order of the cation effect. These results provide new insights into the molecular level mechanisms of anionic and cationic Hofmeister effects.

摘要

特定的抗衡离子效应,如 Hofmeister 序列,对各种现象都很重要,如蛋白质沉淀、电解质溶液的表面张力、表面活性剂的相转变等。我们应用差频探测振动和频产生光谱学研究了荷电界面上抗衡离子对界面水的影响,并结合 Hofmeister 序列讨论了观察到的效应。实验是在正荷电十六烷基三甲基铵单层/电解质溶液界面和负荷电十二烷基硫酸盐单层/电解质界面的模型体系中进行的。在正荷电界面上,界面水的 OH 带的强度按 Hofmeister 序列减小,这表明卤化物阴离子在界面上的吸附能力决定了 Hofmeister 顺序,这与 Zhang 和 Cremer 的先前提出的观点一致(Curr. Opin. Chem. Biol. 2006, 10, 658-663)。另一方面,在负荷电界面上,OH 带的强度与抗衡阳离子没有显著关系,而界面水氢键强度的变化与阳离子效应的 Hofmeister 顺序密切相关。这些结果为阴离子和阳离子 Hofmeister 效应的分子水平机制提供了新的见解。

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