Galamba N, Cabral B J Costa
Grupo de Fisica-Matematica da Universidade de Lisboa, Av. Prof. Gama Pinto 2, 1649-003 Lisboa, Portugal.
J Am Chem Soc. 2008 Dec 31;130(52):17955-60. doi: 10.1021/ja807111y.
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.
通过全电子玻恩-奥本海默分子动力学研究了环境对簇团整体和表面水性质的影响。根据分子取向和簇团氢键网络的局部变化解释了表面水和体相水的振动光谱。我们的结果表明,尽管存在“仅受体”分子的表面部分,但氢键网络在表面比在簇团的体相部分明显更不稳定,并且单供体-受体排列在界面处占主导地位。此外,尽管表面水分子平均描绘出一个伸入气相的单个氢原子,但分子表现出显著的取向自由度。这些结果解释了来自液-气界面的红外和频产生以及X射线光谱的明显相反的实验观察结果。还根据簇团中不同的氢键区域分析了偶极矩、分子内几何结构和表面弛豫。