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Molecular Structure and Dynamics of Water at the Water-Air Interface Studied with Surface-Specific Vibrational Spectroscopy

机译:表面特定振动光谱研究水-空气界面处水的分子结构和动力学

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摘要

Water interfaces provide the platform for many important biological, chemical, and physical processes. The water-air interface is the most common and simple aqueous interface and serves as a model system for water at a hydrophobic surface. Unveiling the microscopic (<1 nm) structure and dynamics of interfacial water at the water-vapor interface is essential for understanding the processes occurring on the water surface. At the water interface the network of very strong intermolecular interactions, hydrogen-bonds, is interrupted and the density of water is reduced. A central question regarding water at interfaces is the extent to which the structure and dynamics of water molecules are influenced by the interruption of the hydrogen-bonded network and thus differ from those of bulk water. Herein, we discuss recent advances in the study of interfacial water at the water-air interface using laser-based surface-specific vibrational spectroscopy.
机译:水界面为许多重要的生物,化学和物理过程提供了平台。水-空气界面是最常见和最简单的水性界面,并用作疏水表面水的模型系统。在水-蒸汽界面揭示界面水的微观结构(<1 nm)和动力学对于理解水表面发生的过程至关重要。在水界面处,非常强的分子间相互作用网络(氢键)被打断,水的密度降低。关于界面处的水的中心问题是水分子的结构和动力学受氢键网络中断的影响程度,因此与散装水不同。在这里,我们讨论使用基于激光的表面特定振动光谱学在水-空气界面界面水研究中的最新进展。

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