首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Liquids and Structural Glasses Special Feature: Structure and charging of hydrophobic material/water interfaces studied by phase-sensitive sum-frequency vibrational spectroscopy
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Liquids and Structural Glasses Special Feature: Structure and charging of hydrophobic material/water interfaces studied by phase-sensitive sum-frequency vibrational spectroscopy

机译:液体和结构玻璃的特点:通过相敏和频振动光谱研究疏水性材料/水界面的结构和电荷

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摘要

We have studied the hydrophobic water/octadecyltrichlorosilane (OTS) interface by using the phase-sensitive sum-frequency vibrational spectroscopy (PS-SFVS), and we obtained detailed structural information of the interface at the molecular level. Excess ions emerging at the interface were detected by changes of the surface vibrational spectrum induced by the surface field created by the excess ions. Both hydronium (H3O+) and hydroxide (OH) ions were found to adsorb at the interface, and so did other negative ions such as Cl. By varying the ion concentrations in the bulk water, their adsorption isotherms were measured. It was seen that among the three, OH has the highest adsorption energy, and H3O+ has the lowest; OH also has the highest saturation coverage, and Cl has the lowest. The result shows that even the neat water/OTS interface is not neutral, but charged with OH ions. The result also explains the surprising observation that the isoelectric point appeared at ∼3.0 when HCl was used to decrease the pH starting from neat water.
机译:我们通过使用相敏和频振动光谱法(PS-SFVS)研究了疏水水/十八烷基三氯硅烷(OTS)界面,并在分子水平上获得了该界面的详细结构信息。通过由过量离子产生的表面场引起的表面振动谱的变化来检测在界面处出现的过量离子。发现水合氢离子(H3O + )和氢氧根(OH -)离子都吸附在界面上,其他负离子(例如Cl -。通过改变散装水中的离子浓度,可以测量它们的吸附等温线。可以看出,在这三种中,OH -具有最高的吸附能,而H3O + 具有最低的吸附能。 OH -的饱和度也最高,而Cl -的饱和度最低。结果表明,即使纯净的水/ OTS界面也不是中性的,而是带有OH -离子。该结果还解释了令人惊讶的观察结果,当使用HCl从纯净水开始降低pH时,等电点出现在约3.0。

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