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Silica Surface Charge Enhancement at Elevated Temperatures Revealed by Interfacial Water Signals

机译:界面水信号揭示了高温下二氧化硅表面电荷的增强

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The structure of water adjacent to silica is sensitive to the degree of deprotonation of surface silanol groups. As a result, close inspection of signals originating from these water molecules can be used to reveal the surface charge density. We have used nonlinear vibrational spectroscopy of the water O—H stretching band over a temperature range of 10—75 ℃ to account for the increase in surface potential from deprotonation. We demonstrate that the behavior at the silica surface is a balance between increasing surface charge and a decreasing contribution of water molecules aligned by the surface charge. Together with a model that accounts for two different types of silanol sites, we use our data to report the changes in enthalpy and entropy for deprotonation at each site. This is the first experimental determination of these thermodynamic parameters for hydrated silanol groups at the silica surface, critical to a wide range of geochemical and technological applications.
机译:与二氧化硅相邻的水的结构对表面硅烷醇基团的去质子化程度敏感。结果,可以仔细检查源自这些水分子的信号,以揭示表面电荷密度。我们已经在10-75℃的温度范围内使用了水OH伸缩带的非线性振动光谱,以说明由于去质子化而增加的表面电势。我们证明了在二氧化硅表面的行为是在增加的表面电荷和减少的水分子通过表面电荷排列之间的平衡。结合说明两种不同硅烷醇位点的模型,我们使用我们的数据报告了每个位点去质子化的焓和熵的变化。这是对二氧化硅表面水合硅烷醇基团的这些热力学参数的首次实验测定,这对广泛的地球化学和技术应用至关重要。

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