Zhu Zhi, Zhou Xin, Li Yangmei, Gu Shiyu, Sun Lan, Liu Yi
School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.
Department of Mechanical Engineering, The Hong Kong Polytechnic University, Hong Kong 999077, China.
J Phys Chem Lett. 2024 Sep 12;15(36):9136-9143. doi: 10.1021/acs.jpclett.4c01871. Epub 2024 Aug 29.
Spatial orderliness, which is the orderly structure of molecules, differs significantly between interfacial water and bulk water. Understanding this property is essential for various applications in both natural and engineered environments. However, the subnanometer thickness of interfacial water presents challenges for direct and rapid characterization of its structural orderliness. Herein, through molecular dynamics simulations and infrared spectral analysis of interfacial water in a graphene slit pore, we reveal a hyperbolic tangent relationship between the water ordering and its O-H stretching information in the infrared spectrum. Specifically, O-H symmetric stretching dominated in the highly ordered water structure, while a transition to the asymmetric stretching corresponded to an increase in the degree of disorder. Thus, the O-H stretching behavior could serve as a useful and quick assessment of the orderliness of interfacial water. This work provided insights into interfacial water's unique molecular network and structural dynamics and identified the stretching vibrations' key role in its degree of order, providing insight for fields such as nanotechnology, biology, and material science.
空间有序性是分子的有序结构,界面水和体相水之间存在显著差异。了解这一特性对于自然和工程环境中的各种应用至关重要。然而,界面水的亚纳米厚度对其结构有序性的直接和快速表征提出了挑战。在此,通过对石墨烯狭缝孔中界面水的分子动力学模拟和红外光谱分析,我们揭示了红外光谱中水的有序性与其O-H伸缩信息之间的双曲正切关系。具体而言,在高度有序的水结构中,O-H对称伸缩占主导,而向不对称伸缩的转变对应于无序程度的增加。因此,O-H伸缩行为可作为评估界面水有序性的有用且快速的方法。这项工作深入了解了界面水独特的分子网络和结构动力学,并确定了伸缩振动在其有序程度中的关键作用,为纳米技术、生物学和材料科学等领域提供了见解。