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Orientation-Induced Adsorption of Hydrated Protons at the Air-Water Interface

机译:方向诱导在空气界面处水合质子的吸附

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摘要

The surface tension of the airwater interface increases upon addition of inorganic salts, implying a negative surface excess of ionic species. Most acids, however, induce a decrease in surface tension, indicating a positive surface excess of hydrated protons. In combination with the apparent negative charge at pure air-water interfaces derived from electrokinetic experiments, this experimental observation has been a source of intense debate since the mid-19th century. Herein, we calculate surface tensions and ionic surface propensities at air-water interfaces from classical, thermodynamically consistent molecular dynamics simulations. The surface tensions of NaOH, HCl, and NaCl solutions show outstanding quantitative agreement with experiment. Of the studied ions, only H3O+ adsorbs to the air-water interface. The adsorption is explained by the deep potential well caused by the orientation of the H3O+ dipole in the interfacial electric field, which is confirmed by abinitio simulations.
机译:在加入无机盐时,空气界面的表面张力增加,暗示离子物质的负面表面过量。 然而,大多数酸导致表面张力的减少,表明水合质子的正表面过量。 与源自电动实验的纯净空气接口的表观负电荷相结合,这种实验观察是自19世纪中叶以来的激烈辩论的源泉。 在此,我们计算来自经典的热力学一致的分子动力学模拟的空气 - 水界面的表面张力和离子表面施力。 NaOH,HCl和NaCl溶液的表面张力显示出与实验的出色的定量协议。 研究了离子,仅H3O +吸附到空气水界面。 通过界面电场中H3O +偶极子的取向引起的深度潜在井来解释吸附,该界面电场中的eBinitio模拟确认。

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