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The Changing Hydrogen-bond Network Of Water From Thebulk To The Surface Of A Cluster: A Born-oppenheimerrnmolecular Dynamics Study

机译:从大体积到团簇表面的水氢键网络的变化:Born-oppenheimerrn分子动力学研究

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The effect of the environment on the properties of water in the bulk and at the surface of a cluster is studied by all-electron Born-Oppenheimer molecular dynamics. The vibrational spectrum of surface and bulk water is interpreted in terms of the molecular orientation and the local changes in the H-bond network of the cluster. Our results show that, in spite of the presence of a surface moiety of "acceptor-only" molecules, the H-bond network is significantly more labile at the surface than in the bulk part of cluster, and single donor-acceptor arrangements are largely dominant at the interface. Further, although surface water molecules depict in average a single H atom protruding into the vapor, molecules exhibit significant orientational freedom. These results explain the apparently opposite experimental observations from infrared sum frequency generation and X-ray spectroscopy of the liquid-vapor interface. The dipole moment, intramolecular geometry and surface relaxation are also analyzed at light of the different H-bond regions in the cluster.
机译:通过全电子Born-Oppenheimer分子动力学研究了环境对团簇整体和团簇表面水性质的影响。地表水和散装水的振动谱根据分子取向和簇的H键网络中的局部变化来解释。我们的结果表明,尽管存在“仅受体”分子的表面部分,但与团簇的大部分相比,表面的H键网络明显不稳定,并且单个供体-受体排列在很大程度上在界面上占主导地位。此外,尽管地表水分子平均显示出一个伸入蒸气中的单个H原子,但分子显示出显着的取向自由度。这些结果解释了从红外总频率生成和液-气界面的X射线光谱学得出的明显相反的实验观察结果。还根据簇中不同的H键区域分析了偶极矩,分子内几何形状和表面弛豫。

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