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界面曲率对水相界面分子性质的影响。

Impact of interfacial curvature on molecular properties of aqueous interfaces.

作者信息

de la Puente M, Laage D

机构信息

PASTEUR, Department of Chemistry, École Normale Supérieure, PSL University, Sorbonne Université, CNRS, 75005 Paris, France.

出版信息

J Chem Phys. 2024 Jun 21;160(23). doi: 10.1063/5.0210884.

Abstract

The curvature of soft interfaces plays a crucial role in determining their mechanical and thermodynamic properties, both at macroscopic and microscopic scales. In the case of air/water interfaces, particular attention has recently focused on water microdroplets, due to their distinctive chemical reactivity. However, the specific impact of curvature on the molecular properties of interfacial water and interfacial reactivity has so far remained elusive. Here, we use molecular dynamics simulations to determine the effect of curvature on a broad range of structural, dynamical, and thermodynamical properties of the interface. For a droplet, a flat interface, and a cavity, we successively examine the structure of the hydrogen-bond network and its relation to vibrational spectroscopy, the dynamics of water translation, rotation, and hydrogen-bond exchanges, and the thermodynamics of ion solvation and ion-pair dissociation. Our simulations show that curvature predominantly impacts the hydrogen-bond structure through the fraction of dangling OH groups and the dynamics of interfacial water molecules. In contrast, curvature has a limited effect on solvation and ion-pair dissociation thermodynamics. For water microdroplets, this suggests that the curvature alone cannot fully account for the distinctive reactivity measured in these systems, which are of great importance for catalysis and atmospheric chemistry.

摘要

软界面的曲率在决定其宏观和微观尺度上的力学和热力学性质方面起着至关重要的作用。在空气/水界面的情况下,由于其独特的化学反应性,水微滴最近受到了特别关注。然而,到目前为止,曲率对界面水的分子性质和界面反应性的具体影响仍然难以捉摸。在这里,我们使用分子动力学模拟来确定曲率对界面广泛的结构、动力学和热力学性质的影响。对于一个液滴、一个平面界面和一个腔体,我们依次研究氢键网络的结构及其与振动光谱的关系、水的平移、旋转和氢键交换的动力学,以及离子溶剂化和离子对解离的热力学。我们的模拟表明,曲率主要通过悬空OH基团的比例和界面水分子的动力学来影响氢键结构。相比之下,曲率对溶剂化和离子对解离热力学的影响有限。对于水微滴,这表明仅曲率不能完全解释在这些系统中测得的独特反应性,而这些系统对催化和大气化学非常重要。

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