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Charge Asymmetry at Aqueous Hydrophobic Interfaces and Hydration Shells

机译:疏水性水界面和水合壳的电荷不对称性

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摘要

The solvation of ions in a dielectric continuum is symmetric with respect to the sign of the ionic charge. Yet, many phenomena show indirect evidence that water may have a preference for negative charge: the vast majority of biological membrane interfaces are neutral or negatively charged/11 water reorientation dynamics around anions and cations is different,'21 and the zero charge point of water is usually well below pH7 at hydrophobic/water interfaces.'31 There is undoubtedly a link to the asymmetry of the water molecule. Here, we spectroscopically quantify differences between the structures of hydration shells and hydrophobic/ water interfaces induced by ions of opposite charge but essentially identical molecular structure. We show that these two ions, tetraphenylborate (TPB~-) and tetraphenylarsonium (TPA~=), interact dramatically differently with water and its interface: The anion is preferentially hydrated and induces greater orientational order to water near hydrophobic interfaces. In contrast, the cation forms far fewer and weaker Jt-H bonds than the anion and strongly reduces the orientational order of water near a hydrophobic interface.
机译:介电连续物中离子的溶剂化是关于离子电荷的符号对称的。然而,许多现象间接表明水可能偏爱负电荷:绝大多数生物膜界面为中性或负电荷/ 11阴离子和阳离子周围的水重新定向动力学是不同的,'21和水的零电荷点通常在疏水/水界面的pH值远低于pH7。'31无疑与水分子的不对称性有关。在这里,我们用光谱法量化了电荷相反但分子结构基本相同的离子诱导的水合壳结构和疏水/水界面之间的差异。我们表明,这两个离子,四苯基硼酸酯(TPB〜-)和四苯基ar(TPA〜=)与水及其界面发生显着不同的相互作用:阴离子优先被水合,并在疏水界面附近对水产生更大的取向顺序。相反,阳离子形成的Jt-H键远少于阴离子,且弱得多,并且显着降低了疏水界面附近水的取向顺序。

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