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Reduced water density at hydrophobic surfaces: Effect of dissolved gases

机译:疏水表面水密度降低:溶解气体的影响

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Here, direct noninvasive neutron reflectivity measurements reveal the presence of a reduced (deuterated) water density region, with a sigmoidal density profile at the hydrophobic silane-water interface that depends on the type and concentration of dissolved gases in the water. Removal of dissolved gases decreases the width of the reduced water density region, and their reintroduction leads to its increase. When compared with recent computer simulations, a locally fluctuating density profile is proposed, whereas preexisting nanobubbles are excluded. The presence of a fluctuating reduced water density region between two hydrophobic surfaces and the attractive "depletion force" to which it leads may help explain the hydrophobic force and its reported diminution in cleaerated water. Our results are also quantitatively consistent with recent dynamic surface force apparatus results that drastically revise previous estimates of the slip length of water flowing past hydrophobic surfaces from microns to approximate to 20 nm. Our observations, therefore, go a long way toward reconciling three quite different types of experiments and phenomena: water depletion at hydrophobic surfaces, water slip at hydrophobic surfaces, and the hydrophobic interaction.
机译:在这里,直接的非侵入式中子反射率测量显示出存在一个减少的(氘化)水密度区域,在疏水性硅烷-水界面处有S形密度分布,这取决于水中溶解气体的类型和浓度。除去溶解的气体减小了减小的水密度区域的宽度,并且它们的重新引入导致其增加。当与最近的计算机模拟比较时,提出了局部波动的密度分布,而排除了先前存在的纳米气泡。两个疏水性表面之间存在波动的降低的水密度区域,以及由此导致的有吸引力的“耗尽力”,可能有助于解释疏水性力及其在净化水中的减少。我们的结果在数量上也与最近的动态表面力装置的结果一致,该结果将流过疏水表面的水的滑移长度的先前估计值从微米大幅度地修改为大约20 nm。因此,我们的观察对调和三种截然不同的实验和现象有很大帮助:疏水表面的水耗竭,疏水表面的水滑漏和疏水相互作用。

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