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Water-mediated ion–ion interactions are enhanced at the water vapor–liquid interface

机译:在水蒸气-液体界面处水介导的离子-离子相互作用增强

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摘要

There is overwhelming evidence that ions are present near the vapor–liquid interface of aqueous salt solutions. Charged groups can also be driven to interfaces by attaching them to hydrophobic moieties. Despite their importance in many self-assembly phenomena, how ion–ion interactions are affected by interfaces is not understood. We use molecular simulations to show that the effective forces between small ions change character dramatically near the water vapor–liquid interface. Specifically, the water-mediated attraction between oppositely charged ions is enhanced relative to that in bulk water. Further, the repulsion between like-charged ions is weaker than that expected from a continuum dielectric description and can even become attractive as the ions are drawn to the vapor side. We show that thermodynamics of ion association are governed by a delicate balance of ion hydration, interfacial tension, and restriction of capillary fluctuations at the interface, leading to nonintuitive phenomena, such as water-mediated like charge attraction. “Sticky” electrostatic interactions may have important consequences on biomolecular structure, assembly, and aggregation at soft liquid interfaces. We demonstrate this by studying an interfacially active model peptide that changes its structure from α-helical to a hairpin-turn–like one in response to charging of its ends.
机译:有大量证据表明,盐水溶液的气液界面附近存在离子。带电基团也可以通过将其连接到疏水部分上而被驱动到界面上。尽管它们在许多自组装现象中很重要,但尚不了解离子与离子的相互作用如何受界面影响。我们使用分子模拟表明,小离子之间的有效力在水蒸气-液体界面附近急剧改变了特性。具体而言,相对于散装水,带相反电荷的离子之间的水介导吸引力增强了。此外,带相同电荷的离子之间的排斥力比连续电介质描述所期望的弱,并且随着离子被吸引到蒸气侧甚至会变得有吸引力。我们表明,离子缔合的热力学受离子水合作用,界面张力和界面处毛细管波动限制的微妙平衡支配,从而导致非直觉现象,例如水介导的电荷吸引。 “粘滞”静电相互作用可能会对生物分子的结构,组装和在柔软液体界面的聚集产生重要影响。我们通过研究一种界面活性模型肽来证明这一点,该模型响应末端电荷而将其结构从α螺旋改变为发夹转。

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