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首页> 外文期刊>Journal of physical chemistry letters >Hydration Repulsion Difference between Ordered and Disordered Membranes Due to Cancellation of Membrane-Membrane and Water-Mediated Interactions
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Hydration Repulsion Difference between Ordered and Disordered Membranes Due to Cancellation of Membrane-Membrane and Water-Mediated Interactions

机译:由于膜膜和水介导的相互作用,有序和无序膜之间的水合排斥差异

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摘要

Hydration repulsion acts between all sufficiently polar surfaces in water at small separations and prevents dry adhesion up to kilobar pressures. Yet it remained unclear whether this ubiquitous force depends on surface structure or is a sole water property. We demonstrate that previous deviations among different experimental measurements of hydration pressures in phospholipid bilayer stacks disappear when plotting data consistently as a function of repeat distance or membrane surface distance. The resulting pressure versus distance curves agree quantitatively with our atomistic simulation results and exhibit different decay lengths in the ordered gel and the disordered fluid states. This suggests that hydration forces are not caused by water ordering effects alone. Splitting the simulated total pressure into membrane membrane and water-mediated parts shows that these contributions are opposite in sign and of similar magnitude, thus they are equally important. The resulting net hydration pressure between membranes is what remains from the near-cancellation of these ambivalent contributions.
机译:水合排斥在水中的所有足够极性表面之间的作用,小分离并防止干粘合达到千巴的压力。然而,它仍然不清楚这种无处不在的力是否取决于表面结构或是唯一的水性能。我们证明,当磷脂双层堆叠中的不同实验测量的不同实验测量的偏差在作为重复距离或膜表面距离的函数始终如一的函数时消失。所得到的压力与距离曲线定量地与我们的原子模拟结果相加,并且在有序凝胶和无序的流体状态下表现出不同的衰减长度。这表明水合力不是由单独的水处理效果引起的。将模拟的总压力分成膜膜和水介导的部件表明,这些贡献在符号和类似的幅度中相反,因此它们同样重要。膜之间产生的净水合压力是近乎取消这些矛盾贡献的剩余部分。

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