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Water structure at the interface of alcohol monolayers as determined by molecular dynamics simulations and computational vibrational sum-frequency generation spectroscopy

机译:由分子动力学模拟和计算振动和频率产生光谱法测定的醇单层界面的水结构

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摘要

We investigate the structure of water at the interface of three long-chain alcohol monolayers differing in alkyl chain length through molecular dynamics simulations combined with modeling of vibrational sum-frequency generation (vSFG) spectra. The effects of alkyl chain parity on interfacial water are examined through extensive analysis of structural properties, hydrogen bonding motifs, and spectral features. Besides providing molecular-level insights into the structure of interfacial water, this study also demonstrates that, by enabling comparisons with experimental vSFG spectra, computational spectroscopy may be used to test and validate force fields commonly used in biomolecular simulations. The results presented here may serve as benchmarks for further investigations to characterize ice nucleation induced by alcohol monolayers.
机译:通过分子动力学模拟与振动和频生成(VSFG)光谱的建模结合使用烷基链长度不同的三个长链醇单层界面的界面的界面结构。 通过对结构性能,氢键基序和光谱特征进行广泛的分析,检查烷基链奇偶阶段对界面水的影响。 除了在界面水的结构中提供分子水平的见解之外,本研究还表明,通过使实验性VSFG光谱的比较,可以使用计算光谱来测试和验证常用于生物分子模拟的力场。 此处呈现的结果可以作为进一步调查表征由醇单层诱导的冰成核来进行的基准。

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