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Characterization of the Acetonitrile Aqueous Solution/Vapor Interface by Liquid-Jet X-ray Photoelectron Spectroscopy

机译:液体喷射X射线光电子能谱表征乙腈水溶液/蒸气界面

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We report photoelectron spectroscopy measurements from binary acetonitrilewater solutions, for a wide range of acetonitrile mole fractions (x(CH)3CN = 0.011-0.90) using a liquid microjet. By detecting the nitrogen and carbon 1s photoelectron signal of CH3CN from aqueous surface and bulk solution, we quantify CH3CNs larger propensity for the solution surface as compared to bulk solution. Quantification of the strong surface adsorption is through determination of the surface mole fraction as a function of bulk solution, x(CH3)CN, from which we estimate the adsorption free energy using the Langmuir adsorption isotherm model. We also discuss alternative approaches to determine the CH3CN surface concentration, based on analysis of the relative amount of gas- versus liquid-phase CH3CN, obtained from the respective photoelectron signal intensities. Another approach is based on the core-level binding energy shifts between liquid- and gas-phase CH3CN, which is sensitive to the change in solution surface potential and thus sensitive to the surface concentration of CH3CN. Gibbs free energy of adsorption values are compared with previous literature estimates, and we consider the possibility of CH3CN bilayer formation. In addition, we use the observed changes in N 1s and C 1s peak positions to estimate the net molecular surface dipole associated with a complete CH3CN surface monolayer, and discuss the implications for orientation of CH3CN molecules relative to the solution surface.
机译:我们报告了使用液体微喷射器从二元乙腈水溶液进行的大范围乙腈摩尔分数(x(CH)3CN = 0.011-0.90)的光电子能谱测量。通过从水表面和本体溶液中检测CH3CN的氮和碳1s光电子信号,我们可以定量确定CH3CN与本体溶液相比在溶液表面具有更大的倾向。通过确定表面摩尔分数作为本体溶液x(CH3)CN的函数,可以对强表面吸附进行定量,然后我们可以使用Langmuir吸附等温线模型从中估算吸附自由能。我们还将根据从相应的光电子信号强度获得的气相与液相CH3CN的相对量进行分析,讨论确定CH3CN表面浓度的替代方法。另一种方法是基于液相和气相CH3CN之间的核心能级结合能转移,它对溶液表面电势的变化敏感,因此对CH3CN的表面浓度敏感。吉布斯吸附能的自由能值与以前的文献估计值进行了比较,我们考虑了CH3CN双层形成的可能性。此外,我们使用观察到的N 1s和C 1s峰位置的变化来估计与完整CH3CN表面单层相关的净分子表面偶极子,并讨论CH3CN分子相对于溶液表面取向的含义。

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