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硬脂醇单分子层对界面水的结构、动力学及振动和频产生光谱的影响

Effects of stearyl alcohol monolayer on the structure, dynamics and vibrational sum frequency generation spectroscopy of interfacial water.

作者信息

Das Banshi, Chandra Amalendu

机构信息

Department of Chemistry, Indian Institute of Technology Kanpur, Uttar Pradesh, 208016, India.

出版信息

Phys Chem Chem Phys. 2022 Mar 23;24(12):7374-7386. doi: 10.1039/d1cp04944e.

Abstract

The structure, dynamics and vibrational spectroscopy of a water surface covered by a monolayer of stearyl alcohol (STA) are investigated by means of molecular dynamics simulations and vibrational sum frequency generation (VSFG) spectral calculations. The STA molecules possess long linear alkyl chains without any branching and have a rather large hydrophobic surface area. The STA-water interface is found to be rather narrow with an ordered outward arrangement of the alcohol chains at the water surface. The water molecules in the interfacial region which contribute most to the observed VSFG spectrum are identified. It is shown that the observed red shift in the hydrogen bonded part of the VSFG spectrum can originate from partial cancellation of the spectral responses from up and down-oriented OH moieties of interfacial water which are hydrogen bonded, respectively, to alcohol and water molecules. The effects of intra and intermolecular coupling to the VSFG spectrum are also calculated for the STA-water interface considered here. On the dynamical side, a slowing down of the hydrogen bond and orientational relaxation is found for the interfacial water. It is found that the ordered arrangement of STA molecules at the surface holds the interfacial water molecules rather tightly and slows down the dynamics. The current results of the STA-water interface are also compared with those of the tertiary butyl alcohol (TBA)-water interface where the alcohol has a fully branched hydrophobic part of the lower surface area.

摘要

通过分子动力学模拟和振动和频产生(VSFG)光谱计算,研究了覆盖有硬脂醇(STA)单分子层的水表面的结构、动力学和振动光谱。STA分子具有无任何支链的长线性烷基链,且具有相当大的疏水表面积。发现STA-水界面相当狭窄,醇链在水表面呈有序向外排列。确定了对观察到的VSFG光谱贡献最大的界面区域中的水分子。结果表明,VSFG光谱中氢键部分观察到的红移可能源于分别与醇和水分子形成氢键的界面水的上下取向OH基团的光谱响应的部分抵消。还针对此处考虑的STA-水界面计算了分子内和分子间耦合对VSFG光谱的影响。在动力学方面,发现界面水的氢键和取向弛豫减慢。发现表面STA分子的有序排列相当紧密地固定住界面水分子并减慢了动力学。还将STA-水界面的当前结果与叔丁醇(TBA)-水界面的结果进行了比较,在叔丁醇-水界面中,醇具有较低表面积的完全支化疏水部分。

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