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首页> 外文期刊>Physical chemistry chemical physics: PCCP >First-principles study of luoroform adsorption on a hexagonal ice (0001) surface: weak hydrogen bonds—strong structural effects
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First-principles study of luoroform adsorption on a hexagonal ice (0001) surface: weak hydrogen bonds—strong structural effects

机译:六边形冰(0001)表面上的luoroform吸附的第一性原理研究:弱氢键—强结构效应

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摘要

For isolated fluoroform (F3CH) molecules adsorbed on a hexagonal ice (0001) surface the properties of blue- and red-shifting hydrogen bonds were studied using static density functional theory (DFT) calculations and Car-Parrinello molecular dynamics (CP-MD) simulations. A systematic search by starting from many initial configurations was performed to determine the lowest-energy structures of F3CH on the ice surface, and for the optimized geometries the vibrational frequencies were calculated. The local minima structures are analyzed in terms of their coordination to the surface, with special focus on identifying blue-shifting hydrogen bonds via their spectroscopic signature of an increased frequency of the C-H fundamental stretching vibration. Subsequently, by CP-MD simulations the stability of the lowest-energy configurations at finite temperatures was verified and possible transformation pathways connecting the local minima structures were explored.
机译:对于吸附在六角形冰(0001)表面上的孤立的氟仿(F3CH)分子,使用静态密度泛函理论(DFT)计算和Car-Parrinello分子动力学(CP-MD)模拟研究了蓝移和红移氢键的性质。通过从许多初始配置开始进行系统搜索,以确定冰表面F3CH的最低能级结构,并针对最佳几何形状计算了振动频率。分析了局部极小结构与表面的配位关系,并特别关注通过C-H基本拉伸振动频率增加的光谱特征识别蓝移氢键。随后,通过CP-MD模拟,验证了最低能量构型在有限温度下的稳定性,并探索了连接局部极小结构的可能转化途径。

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